FHIR Osiris Implementation Guide - Local Development build (v2.1.0) built by the FHIR (HL7® FHIR® Standard) Build Tools. See the Directory of published versions
Draft as of 2024-03-21 |
Definitions for the genome-entity resource profile.
Guidance on how to interpret the contents of this table can be found here
0. MolecularSequence | |
2. MolecularSequence.extension | |
Control | 1..? |
4. MolecularSequence.extension:genomeentityType | |
Slice Name | genomeentityType |
Definition | OSIRIS code of the molecular entity where the genomic alteration is found. |
Short | Molecular entity |
Control | 1..1 |
Type | Extension(GenomeEntityType) (Extension Type: CodeableConcept) |
Must Support | true |
6. MolecularSequence.type | |
Control | 0..0 |
Must Support | true |
8. MolecularSequence.coordinateSystem | |
Pattern Value | 0 |
10. MolecularSequence.patient | |
Type | Reference(Oncology Patient) |
Must Support | true |
12. MolecularSequence.repository | |
Control | 1..? |
Slicing | This element introduces a set of slices on MolecularSequence.repository . The slices are unordered and Open, and can be differentiated using the following discriminators: |
14. MolecularSequence.repository:genome-entity-db | |
Slice Name | genome-entity-db |
Control | 1..1 |
16. MolecularSequence.repository:genome-entity-db.type | |
Pattern Value | other |
18. MolecularSequence.repository:genome-entity-db.name | |
Definition | The database used to precisely name the molecular entity. |
Short | The database listing the molecular entity |
Control | 1..? |
20. MolecularSequence.repository:genome-entity-db.datasetId | |
Definition | The identifier of the molecular entity in the database. |
Short | Molecular entity identifier |
Control | 1..? |
Guidance on how to interpret the contents of this table can be found here
0. MolecularSequence | |
Definition | Raw data describing a biological sequence. |
Short | Information about a biological sequence |
Control | 0..* |
Invariants | dom-2: If the resource is contained in another resource, it SHALL NOT contain nested Resources (contained.contained.empty()) dom-4: If a resource is contained in another resource, it SHALL NOT have a meta.versionId or a meta.lastUpdated (contained.meta.versionId.empty() and contained.meta.lastUpdated.empty()) dom-3: If the resource is contained in another resource, it SHALL be referred to from elsewhere in the resource or SHALL refer to the containing resource (contained.where((('#'+id in (%resource.descendants().reference | %resource.descendants().as(canonical) | %resource.descendants().as(uri) | %resource.descendants().as(url))) or descendants().where(reference = '#').exists() or descendants().where(as(canonical) = '#').exists() or descendants().where(as(canonical) = '#').exists()).not()).trace('unmatched', id).empty()) dom-6: A resource should have narrative for robust management (text.`div`.exists()) dom-5: If a resource is contained in another resource, it SHALL NOT have a security label (contained.meta.security.empty()) msq-3: Only 0 and 1 are valid for coordinateSystem (coordinateSystem = 1 or coordinateSystem = 0) |
2. MolecularSequence.implicitRules | |
Definition | A reference to a set of rules that were followed when the resource was constructed, and which must be understood when processing the content. Often, this is a reference to an implementation guide that defines the special rules along with other profiles etc. |
Short | A set of rules under which this content was created |
Comments | Asserting this rule set restricts the content to be only understood by a limited set of trading partners. This inherently limits the usefulness of the data in the long term. However, the existing health eco-system is highly fractured, and not yet ready to define, collect, and exchange data in a generally computable sense. Wherever possible, implementers and/or specification writers should avoid using this element. Often, when used, the URL is a reference to an implementation guide that defines these special rules as part of it's narrative along with other profiles, value sets, etc. |
Control | 0..1 This element is affected by the following invariants: ele-1 |
Type | uri |
Is Modifier | true because This element is labeled as a modifier because the implicit rules may provide additional knowledge about the resource that modifies it's meaning or interpretation |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
4. MolecularSequence.extension | |
Definition | An Extension May be used to represent additional information that is not part of the basic definition of the resource. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. |
Short | ExtensionAdditional content defined by implementations |
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. |
Control | 10..* This element is affected by the following invariants: ele-1 |
Type | Extension |
Alternate Names | extensions, user content |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ext-1: Must have either extensions or value[x], not both (extension.exists() != value.exists()) |
Slicing | This element introduces a set of slices on MolecularSequence.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: |
6. MolecularSequence.extension:genomeentityType | |
Slice Name | genomeentityType |
Definition | OSIRIS code of the molecular entity where the genomic alteration is found. |
Short | Molecular entity |
Control | 1..1 This element is affected by the following invariants: ele-1 |
Type | Extension(GenomeEntityType) (Extension Type: CodeableConcept) |
Must Support | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ext-1: Must have either extensions or value[x], not both (extension.exists() != value.exists()) |
8. MolecularSequence.modifierExtension | |
Definition | May be used to represent additional information that is not part of the basic definition of the resource and that modifies the understanding of the element that contains it and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer is allowed to define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). |
Short | Extensions that cannot be ignored |
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. |
Control | 0..* This element is affected by the following invariants: ele-1 |
Type | Extension |
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the resource that contains them |
Standards Status | Normative (from Trial Use) |
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. |
Alternate Names | extensions, user content |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ext-1: Must have either extensions or value[x], not both (extension.exists() != value.exists()) |
Slicing | This element introduces a set of slices on MolecularSequence.modifierExtension . The slices are unordered and Open, and can be differentiated using the following discriminators: |
10. MolecularSequence.type | |
Definition | Amino Acid Sequence/ DNA Sequence / RNA Sequence. |
Short | aa | dna | rna |
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size |
Control | 0..01 This element is affected by the following invariants: ele-1 |
Binding | The codes SHALL be taken from sequenceTypehttp://hl7.org/fhir/ValueSet/sequence-type|4.0.1 (required to http://hl7.org/fhir/ValueSet/sequence-type|4.0.1 )Type if a sequence -- DNA, RNA, or amino acid sequence. |
Type | code |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Must Support | true |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
12. MolecularSequence.coordinateSystem | |
Definition | Whether the sequence is numbered starting at 0 (0-based numbering or coordinates, inclusive start, exclusive end) or starting at 1 (1-based numbering, inclusive start and inclusive end). |
Short | Base number of coordinate system (0 for 0-based numbering or coordinates, inclusive start, exclusive end, 1 for 1-based numbering, inclusive start, inclusive end) |
Comments | 32 bit number; for values larger than this, use decimal |
Control | 1..1 This element is affected by the following invariants: ele-1 |
Type | integer |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Pattern Value | 0 |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
14. MolecularSequence.patient | |
Definition | The patient whose sequencing results are described by this resource. |
Short | Who and/or what this is about |
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. |
Control | 0..1 This element is affected by the following invariants: ele-1 |
Type | Reference(Oncology Patient, Patient) |
Must Support | true |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ref-1: SHALL have a contained resource if a local reference is provided (reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids'))) |
16. MolecularSequence.repository | |
Definition | Configurations of the external repository. The repository shall store target's observedSeq or records related with target's observedSeq. |
Short | External repository which contains detailed report related with observedSeq in this resource |
Control | 10..* This element is affected by the following invariants: ele-1 |
Type | BackboneElement |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
Slicing | This element introduces a set of slices on MolecularSequence.repository . The slices are unordered and Open, and can be differentiated using the following discriminators: |
18. MolecularSequence.repository.modifierExtension | |
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). |
Short | Extensions that cannot be ignored even if unrecognized |
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. |
Control | 0..* This element is affected by the following invariants: ele-1 |
Type | Extension |
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them |
Summary | true |
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. |
Alternate Names | extensions, user content, modifiers |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ext-1: Must have either extensions or value[x], not both (extension.exists() != value.exists()) |
20. MolecularSequence.repository.type | |
Definition | Click and see / RESTful API / Need login to see / RESTful API with authentication / Other ways to see resource. |
Short | directlink | openapi | login | oauth | other |
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size |
Control | 1..1 This element is affected by the following invariants: ele-1 |
Binding | The codes SHALL be taken from repositoryTypehttp://hl7.org/fhir/ValueSet/repository-type|4.0.1 (required to http://hl7.org/fhir/ValueSet/repository-type|4.0.1 )Type for access of external URI. |
Type | code |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
22. MolecularSequence.repository:genome-entity-db | |
Slice Name | genome-entity-db |
Definition | Configurations of the external repository. The repository shall store target's observedSeq or records related with target's observedSeq. |
Short | External repository which contains detailed report related with observedSeq in this resource |
Control | 10..1* This element is affected by the following invariants: ele-1 |
Type | BackboneElement |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
24. MolecularSequence.repository:genome-entity-db.modifierExtension | |
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). |
Short | Extensions that cannot be ignored even if unrecognized |
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. |
Control | 0..* This element is affected by the following invariants: ele-1 |
Type | Extension |
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them |
Summary | true |
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. |
Alternate Names | extensions, user content, modifiers |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) ext-1: Must have either extensions or value[x], not both (extension.exists() != value.exists()) |
26. MolecularSequence.repository:genome-entity-db.type | |
Definition | Click and see / RESTful API / Need login to see / RESTful API with authentication / Other ways to see resource. |
Short | directlink | openapi | login | oauth | other |
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size |
Control | 1..1 This element is affected by the following invariants: ele-1 |
Binding | The codes SHALL be taken from repositoryTypehttp://hl7.org/fhir/ValueSet/repository-type|4.0.1 (required to http://hl7.org/fhir/ValueSet/repository-type|4.0.1 )Type for access of external URI. |
Type | code |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Pattern Value | other |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
28. MolecularSequence.repository:genome-entity-db.name | |
Definition | The database used to precisely name the molecular entity. URI of an external repository which contains further details about the genetics data. |
Short | The database listing the molecular entityRepository's name |
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size |
Control | 10..1 This element is affected by the following invariants: ele-1 |
Type | string |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
30. MolecularSequence.repository:genome-entity-db.datasetId | |
Definition | The identifier of the molecular entity in the database. Id of the variant in this external repository. The server will understand how to use this id to call for more info about datasets in external repository. |
Short | Molecular entity identifierId of the dataset that used to call for dataset in repository |
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size |
Control | 10..1 This element is affected by the following invariants: ele-1 |
Type | string |
Primitive Value | This primitive element may be present, or absent, or replaced by an extension |
Summary | true |
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count())) |
Guidance on how to interpret the contents of this table can be found here
0. MolecularSequence | |||||
Definition | Raw data describing a biological sequence. | ||||
Short | Information about a biological sequence | ||||
Control | 0..* | ||||
Invariants | dom-2: If the resource is contained in another resource, it SHALL NOT contain nested Resources (contained.contained.empty() )dom-4: If a resource is contained in another resource, it SHALL NOT have a meta.versionId or a meta.lastUpdated ( contained.meta.versionId.empty() and contained.meta.lastUpdated.empty() )dom-3: If the resource is contained in another resource, it SHALL be referred to from elsewhere in the resource or SHALL refer to the containing resource ( contained.where((('#'+id in (%resource.descendants().reference | %resource.descendants().as(canonical) | %resource.descendants().as(uri) | %resource.descendants().as(url))) or descendants().where(reference = '#').exists() or descendants().where(as(canonical) = '#').exists() or descendants().where(as(canonical) = '#').exists()).not()).trace('unmatched', id).empty() )dom-6: A resource should have narrative for robust management ( text.`div`.exists() )dom-5: If a resource is contained in another resource, it SHALL NOT have a security label ( contained.meta.security.empty() )msq-3: Only 0 and 1 are valid for coordinateSystem ( coordinateSystem = 1 or coordinateSystem = 0 ) | ||||
2. MolecularSequence.id | |||||
Definition | The logical id of the resource, as used in the URL for the resource. Once assigned, this value never changes. | ||||
Short | Logical id of this artifact | ||||
Comments | The only time that a resource does not have an id is when it is being submitted to the server using a create operation. | ||||
Control | 0..1 | ||||
Type | id | ||||
Summary | true | ||||
4. MolecularSequence.meta | |||||
Definition | The metadata about the resource. This is content that is maintained by the infrastructure. Changes to the content might not always be associated with version changes to the resource. | ||||
Short | Metadata about the resource | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Meta | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
6. MolecularSequence.implicitRules | |||||
Definition | A reference to a set of rules that were followed when the resource was constructed, and which must be understood when processing the content. Often, this is a reference to an implementation guide that defines the special rules along with other profiles etc. | ||||
Short | A set of rules under which this content was created | ||||
Comments | Asserting this rule set restricts the content to be only understood by a limited set of trading partners. This inherently limits the usefulness of the data in the long term. However, the existing health eco-system is highly fractured, and not yet ready to define, collect, and exchange data in a generally computable sense. Wherever possible, implementers and/or specification writers should avoid using this element. Often, when used, the URL is a reference to an implementation guide that defines these special rules as part of it's narrative along with other profiles, value sets, etc. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | uri | ||||
Is Modifier | true because This element is labeled as a modifier because the implicit rules may provide additional knowledge about the resource that modifies it's meaning or interpretation | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
8. MolecularSequence.language | |||||
Definition | The base language in which the resource is written. | ||||
Short | Language of the resource content | ||||
Comments | Language is provided to support indexing and accessibility (typically, services such as text to speech use the language tag). The html language tag in the narrative applies to the narrative. The language tag on the resource may be used to specify the language of other presentations generated from the data in the resource. Not all the content has to be in the base language. The Resource.language should not be assumed to apply to the narrative automatically. If a language is specified, it should it also be specified on the div element in the html (see rules in HTML5 for information about the relationship between xml:lang and the html lang attribute). | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHOULD be taken from CommonLanguages (preferred to http://hl7.org/fhir/ValueSet/languages )A human language.
| ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
10. MolecularSequence.text | |||||
Definition | A human-readable narrative that contains a summary of the resource and can be used to represent the content of the resource to a human. The narrative need not encode all the structured data, but is required to contain sufficient detail to make it "clinically safe" for a human to just read the narrative. Resource definitions may define what content should be represented in the narrative to ensure clinical safety. | ||||
Short | Text summary of the resource, for human interpretation | ||||
Comments | Contained resources do not have narrative. Resources that are not contained SHOULD have a narrative. In some cases, a resource may only have text with little or no additional discrete data (as long as all minOccurs=1 elements are satisfied). This may be necessary for data from legacy systems where information is captured as a "text blob" or where text is additionally entered raw or narrated and encoded information is added later. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Narrative | ||||
Alternate Names | narrative, html, xhtml, display | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
12. MolecularSequence.contained | |||||
Definition | These resources do not have an independent existence apart from the resource that contains them - they cannot be identified independently, and nor can they have their own independent transaction scope. | ||||
Short | Contained, inline Resources | ||||
Comments | This should never be done when the content can be identified properly, as once identification is lost, it is extremely difficult (and context dependent) to restore it again. Contained resources may have profiles and tags In their meta elements, but SHALL NOT have security labels. | ||||
Control | 0..* | ||||
Type | Resource | ||||
Alternate Names | inline resources, anonymous resources, contained resources | ||||
14. MolecularSequence.extension | |||||
Definition | An Extension | ||||
Short | Extension | ||||
Control | 1..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
16. MolecularSequence.extension:genomeentityType | |||||
Slice Name | genomeentityType | ||||
Definition | OSIRIS code of the molecular entity where the genomic alteration is found. | ||||
Short | Molecular entity | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Type | Extension(GenomeEntityType) (Extension Type: CodeableConcept) | ||||
Must Support | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
18. MolecularSequence.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the resource and that modifies the understanding of the element that contains it and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer is allowed to define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the resource that contains them | ||||
Standards Status | Normative (from Trial Use) | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.modifierExtension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
20. MolecularSequence.identifier | |||||
Definition | A unique identifier for this particular sequence instance. This is a FHIR-defined id. | ||||
Short | Unique ID for this particular sequence. This is a FHIR-defined id | ||||
Note | This is a business identifier, not a resource identifier (see discussion) | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Identifier | ||||
Summary | true | ||||
Requirements | Allows sequences to be distinguished and referenced. | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
22. MolecularSequence.type | |||||
Definition | Amino Acid Sequence/ DNA Sequence / RNA Sequence. | ||||
Short | aa | dna | rna | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..0 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from sequenceType (required to http://hl7.org/fhir/ValueSet/sequence-type|4.0.1 )Type if a sequence -- DNA, RNA, or amino acid sequence. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Must Support | true | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
24. MolecularSequence.coordinateSystem | |||||
Definition | Whether the sequence is numbered starting at 0 (0-based numbering or coordinates, inclusive start, exclusive end) or starting at 1 (1-based numbering, inclusive start and inclusive end). | ||||
Short | Base number of coordinate system (0 for 0-based numbering or coordinates, inclusive start, exclusive end, 1 for 1-based numbering, inclusive start, inclusive end) | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Pattern Value | 0 | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
26. MolecularSequence.patient | |||||
Definition | The patient whose sequencing results are described by this resource. | ||||
Short | Who and/or what this is about | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(Oncology Patient) | ||||
Must Support | true | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
28. MolecularSequence.specimen | |||||
Definition | Specimen used for sequencing. | ||||
Short | Specimen used for sequencing | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(Specimen) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
30. MolecularSequence.device | |||||
Definition | The method for sequencing, for example, chip information. | ||||
Short | The method for sequencing | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(Device) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
32. MolecularSequence.performer | |||||
Definition | The organization or lab that should be responsible for this result. | ||||
Short | Who should be responsible for test result | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(Organization) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
34. MolecularSequence.quantity | |||||
Definition | The number of copies of the sequence of interest. (RNASeq). | ||||
Short | The number of copies of the sequence of interest. (RNASeq) | ||||
Comments | The context of use may frequently define what kind of quantity this is and therefore what kind of units can be used. The context of use may also restrict the values for the comparator. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Quantity | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )qty-3: If a code for the unit is present, the system SHALL also be present ( code.empty() or system.exists() ) | ||||
36. MolecularSequence.referenceSeq | |||||
Definition | A sequence that is used as a reference to describe variants that are present in a sequence analyzed. | ||||
Short | A sequence used as reference | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )msq-6: Have and only have one of the following elements in referenceSeq : 1. genomeBuild ; 2 referenceSeqId; 3. referenceSeqPointer; 4. referenceSeqString; ( (genomeBuild.count()+referenceSeqId.count()+ referenceSeqPointer.count()+ referenceSeqString.count()) = 1 )msq-5: GenomeBuild and chromosome must be both contained if either one of them is contained ( (chromosome.empty() and genomeBuild.empty()) or (chromosome.exists() and genomeBuild.exists()) ) | ||||
38. MolecularSequence.referenceSeq.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
40. MolecularSequence.referenceSeq.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.referenceSeq.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
42. MolecularSequence.referenceSeq.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
44. MolecularSequence.referenceSeq.chromosome | |||||
Definition | Structural unit composed of a nucleic acid molecule which controls its own replication through the interaction of specific proteins at one or more origins of replication (SO:0000340). | ||||
Short | Chromosome containing genetic finding | ||||
Comments | Not all terminology uses fit this general pattern. In some cases, models should not use CodeableConcept and use Coding directly and provide their own structure for managing text, codings, translations and the relationship between elements and pre- and post-coordination. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | For example codes, see chromosome-human (example to http://hl7.org/fhir/ValueSet/chromosome-human )Chromosome number for human. | ||||
Type | CodeableConcept | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
46. MolecularSequence.referenceSeq.genomeBuild | |||||
Definition | The Genome Build used for reference, following GRCh build versions e.g. 'GRCh 37'. Version number must be included if a versioned release of a primary build was used. | ||||
Short | The Genome Build used for reference, following GRCh build versions e.g. 'GRCh 37' | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
48. MolecularSequence.referenceSeq.orientation | |||||
Definition | A relative reference to a DNA strand based on gene orientation. The strand that contains the open reading frame of the gene is the "sense" strand, and the opposite complementary strand is the "antisense" strand. | ||||
Short | sense | antisense | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from orientationType (required to http://hl7.org/fhir/ValueSet/orientation-type|4.0.1 )Type for orientation. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
50. MolecularSequence.referenceSeq.referenceSeqId | |||||
Definition | Reference identifier of reference sequence submitted to NCBI. It must match the type in the MolecularSequence.type field. For example, the prefix, “NG_” identifies reference sequence for genes, “NM_” for messenger RNA transcripts, and “NP_” for amino acid sequences. | ||||
Short | Reference identifier | ||||
Comments | Not all terminology uses fit this general pattern. In some cases, models should not use CodeableConcept and use Coding directly and provide their own structure for managing text, codings, translations and the relationship between elements and pre- and post-coordination. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | For example codes, see ENSEMBL (example to http://hl7.org/fhir/ValueSet/sequence-referenceSeq )Reference identifier. | ||||
Type | CodeableConcept | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
52. MolecularSequence.referenceSeq.referenceSeqPointer | |||||
Definition | A pointer to another MolecularSequence entity as reference sequence. | ||||
Short | A pointer to another MolecularSequence entity as reference sequence | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(MolecularSequence) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
54. MolecularSequence.referenceSeq.referenceSeqString | |||||
Definition | A string like "ACGT". | ||||
Short | A string to represent reference sequence | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
56. MolecularSequence.referenceSeq.strand | |||||
Definition | An absolute reference to a strand. The Watson strand is the strand whose 5'-end is on the short arm of the chromosome, and the Crick strand as the one whose 5'-end is on the long arm. | ||||
Short | watson | crick | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from strandType (required to http://hl7.org/fhir/ValueSet/strand-type|4.0.1 )Type for strand. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
58. MolecularSequence.referenceSeq.windowStart | |||||
Definition | Start position of the window on the reference sequence. If the coordinate system is either 0-based or 1-based, then start position is inclusive. | ||||
Short | Start position of the window on the reference sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
60. MolecularSequence.referenceSeq.windowEnd | |||||
Definition | End position of the window on the reference sequence. If the coordinate system is 0-based then end is exclusive and does not include the last position. If the coordinate system is 1-base, then end is inclusive and includes the last position. | ||||
Short | End position of the window on the reference sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
62. MolecularSequence.variant | |||||
Definition | The definition of variant here originates from Sequence ontology (variant_of). This element can represent amino acid or nucleic sequence change(including insertion,deletion,SNP,etc.) It can represent some complex mutation or segment variation with the assist of CIGAR string. | ||||
Short | Variant in sequence | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
64. MolecularSequence.variant.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
66. MolecularSequence.variant.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.variant.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
68. MolecularSequence.variant.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
70. MolecularSequence.variant.start | |||||
Definition | Start position of the variant on the reference sequence. If the coordinate system is either 0-based or 1-based, then start position is inclusive. | ||||
Short | Start position of the variant on the reference sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
72. MolecularSequence.variant.end | |||||
Definition | End position of the variant on the reference sequence. If the coordinate system is 0-based then end is exclusive and does not include the last position. If the coordinate system is 1-base, then end is inclusive and includes the last position. | ||||
Short | End position of the variant on the reference sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
74. MolecularSequence.variant.observedAllele | |||||
Definition | An allele is one of a set of coexisting sequence variants of a gene (SO:0001023). Nucleotide(s)/amino acids from start position of sequence to stop position of sequence on the positive (+) strand of the observed sequence. When the sequence type is DNA, it should be the sequence on the positive (+) strand. This will lay in the range between variant.start and variant.end. | ||||
Short | Allele that was observed | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
76. MolecularSequence.variant.referenceAllele | |||||
Definition | An allele is one of a set of coexisting sequence variants of a gene (SO:0001023). Nucleotide(s)/amino acids from start position of sequence to stop position of sequence on the positive (+) strand of the reference sequence. When the sequence type is DNA, it should be the sequence on the positive (+) strand. This will lay in the range between variant.start and variant.end. | ||||
Short | Allele in the reference sequence | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
78. MolecularSequence.variant.cigar | |||||
Definition | Extended CIGAR string for aligning the sequence with reference bases. See detailed documentation here. | ||||
Short | Extended CIGAR string for aligning the sequence with reference bases | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
80. MolecularSequence.variant.variantPointer | |||||
Definition | A pointer to an Observation containing variant information. | ||||
Short | Pointer to observed variant information | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Reference(Observation) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
82. MolecularSequence.observedSeq | |||||
Definition | Sequence that was observed. It is the result marked by referenceSeq along with variant records on referenceSeq. This shall start from referenceSeq.windowStart and end by referenceSeq.windowEnd. | ||||
Short | Sequence that was observed | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
84. MolecularSequence.quality | |||||
Definition | An experimental feature attribute that defines the quality of the feature in a quantitative way, such as a phred quality score (SO:0001686). | ||||
Short | An set of value as quality of sequence | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
86. MolecularSequence.quality.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
88. MolecularSequence.quality.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.quality.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
90. MolecularSequence.quality.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
92. MolecularSequence.quality.type | |||||
Definition | INDEL / SNP / Undefined variant. | ||||
Short | indel | snp | unknown | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from qualityType (required to http://hl7.org/fhir/ValueSet/quality-type|4.0.1 )Type for quality report. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
94. MolecularSequence.quality.standardSequence | |||||
Definition | Gold standard sequence used for comparing against. | ||||
Short | Standard sequence for comparison | ||||
Comments | Not all terminology uses fit this general pattern. In some cases, models should not use CodeableConcept and use Coding directly and provide their own structure for managing text, codings, translations and the relationship between elements and pre- and post-coordination. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | For example codes, see FDA-StandardSequence (example to http://hl7.org/fhir/ValueSet/sequence-quality-standardSequence )Reference identifier of the sequence that used to mark the quality of tested samples. | ||||
Type | CodeableConcept | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
96. MolecularSequence.quality.start | |||||
Definition | Start position of the sequence. If the coordinate system is either 0-based or 1-based, then start position is inclusive. | ||||
Short | Start position of the sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
98. MolecularSequence.quality.end | |||||
Definition | End position of the sequence. If the coordinate system is 0-based then end is exclusive and does not include the last position. If the coordinate system is 1-base, then end is inclusive and includes the last position. | ||||
Short | End position of the sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
100. MolecularSequence.quality.score | |||||
Definition | The score of an experimentally derived feature such as a p-value (SO:0001685). | ||||
Short | Quality score for the comparison | ||||
Comments | The context of use may frequently define what kind of quantity this is and therefore what kind of units can be used. The context of use may also restrict the values for the comparator. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | Quantity | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )qty-3: If a code for the unit is present, the system SHALL also be present ( code.empty() or system.exists() ) | ||||
102. MolecularSequence.quality.method | |||||
Definition | Which method is used to get sequence quality. | ||||
Short | Method to get quality | ||||
Comments | Not all terminology uses fit this general pattern. In some cases, models should not use CodeableConcept and use Coding directly and provide their own structure for managing text, codings, translations and the relationship between elements and pre- and post-coordination. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | For example codes, see FDA-Method (example to http://hl7.org/fhir/ValueSet/sequence-quality-method )The method used to evaluate the numerical quality of the observed sequence. | ||||
Type | CodeableConcept | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
104. MolecularSequence.quality.truthTP | |||||
Definition | True positives, from the perspective of the truth data, i.e. the number of sites in the Truth Call Set for which there are paths through the Query Call Set that are consistent with all of the alleles at this site, and for which there is an accurate genotype call for the event. | ||||
Short | True positives from the perspective of the truth data | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
106. MolecularSequence.quality.queryTP | |||||
Definition | True positives, from the perspective of the query data, i.e. the number of sites in the Query Call Set for which there are paths through the Truth Call Set that are consistent with all of the alleles at this site, and for which there is an accurate genotype call for the event. | ||||
Short | True positives from the perspective of the query data | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
108. MolecularSequence.quality.truthFN | |||||
Definition | False negatives, i.e. the number of sites in the Truth Call Set for which there is no path through the Query Call Set that is consistent with all of the alleles at this site, or sites for which there is an inaccurate genotype call for the event. Sites with correct variant but incorrect genotype are counted here. | ||||
Short | False negatives | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
110. MolecularSequence.quality.queryFP | |||||
Definition | False positives, i.e. the number of sites in the Query Call Set for which there is no path through the Truth Call Set that is consistent with this site. Sites with correct variant but incorrect genotype are counted here. | ||||
Short | False positives | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
112. MolecularSequence.quality.gtFP | |||||
Definition | The number of false positives where the non-REF alleles in the Truth and Query Call Sets match (i.e. cases where the truth is 1/1 and the query is 0/1 or similar). | ||||
Short | False positives where the non-REF alleles in the Truth and Query Call Sets match | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
114. MolecularSequence.quality.precision | |||||
Definition | QUERY.TP / (QUERY.TP + QUERY.FP). | ||||
Short | Precision of comparison | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
116. MolecularSequence.quality.recall | |||||
Definition | TRUTH.TP / (TRUTH.TP + TRUTH.FN). | ||||
Short | Recall of comparison | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
118. MolecularSequence.quality.fScore | |||||
Definition | Harmonic mean of Recall and Precision, computed as: 2 * precision * recall / (precision + recall). | ||||
Short | F-score | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
120. MolecularSequence.quality.roc | |||||
Definition | Receiver Operator Characteristic (ROC) Curve to give sensitivity/specificity tradeoff. | ||||
Short | Receiver Operator Characteristic (ROC) Curve | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
122. MolecularSequence.quality.roc.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
124. MolecularSequence.quality.roc.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.quality.roc.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
126. MolecularSequence.quality.roc.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
128. MolecularSequence.quality.roc.score | |||||
Definition | Invidual data point representing the GQ (genotype quality) score threshold. | ||||
Short | Genotype quality score | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
130. MolecularSequence.quality.roc.numTP | |||||
Definition | The number of true positives if the GQ score threshold was set to "score" field value. | ||||
Short | Roc score true positive numbers | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
132. MolecularSequence.quality.roc.numFP | |||||
Definition | The number of false positives if the GQ score threshold was set to "score" field value. | ||||
Short | Roc score false positive numbers | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
134. MolecularSequence.quality.roc.numFN | |||||
Definition | The number of false negatives if the GQ score threshold was set to "score" field value. | ||||
Short | Roc score false negative numbers | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
136. MolecularSequence.quality.roc.precision | |||||
Definition | Calculated precision if the GQ score threshold was set to "score" field value. | ||||
Short | Precision of the GQ score | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
138. MolecularSequence.quality.roc.sensitivity | |||||
Definition | Calculated sensitivity if the GQ score threshold was set to "score" field value. | ||||
Short | Sensitivity of the GQ score | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
140. MolecularSequence.quality.roc.fMeasure | |||||
Definition | Calculated fScore if the GQ score threshold was set to "score" field value. | ||||
Short | FScore of the GQ score | ||||
Comments | Do not use an IEEE type floating point type, instead use something that works like a true decimal, with inbuilt precision (e.g. Java BigInteger) | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | decimal | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
142. MolecularSequence.readCoverage | |||||
Definition | Coverage (read depth or depth) is the average number of reads representing a given nucleotide in the reconstructed sequence. | ||||
Short | Average number of reads representing a given nucleotide in the reconstructed sequence | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
144. MolecularSequence.repository | |||||
Definition | Configurations of the external repository. The repository shall store target's observedSeq or records related with target's observedSeq. | ||||
Short | External repository which contains detailed report related with observedSeq in this resource | ||||
Control | 1..* This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.repository . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
146. MolecularSequence.repository.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
148. MolecularSequence.repository.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.repository.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
150. MolecularSequence.repository.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
152. MolecularSequence.repository.type | |||||
Definition | Click and see / RESTful API / Need login to see / RESTful API with authentication / Other ways to see resource. | ||||
Short | directlink | openapi | login | oauth | other | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from repositoryType (required to http://hl7.org/fhir/ValueSet/repository-type|4.0.1 )Type for access of external URI. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
154. MolecularSequence.repository.url | |||||
Definition | URI of an external repository which contains further details about the genetics data. | ||||
Short | URI of the repository | ||||
Comments | see http://en.wikipedia.org/wiki/Uniform_resource_identifier | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | uri | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
156. MolecularSequence.repository.name | |||||
Definition | URI of an external repository which contains further details about the genetics data. | ||||
Short | Repository's name | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
158. MolecularSequence.repository.datasetId | |||||
Definition | Id of the variant in this external repository. The server will understand how to use this id to call for more info about datasets in external repository. | ||||
Short | Id of the dataset that used to call for dataset in repository | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
160. MolecularSequence.repository.variantsetId | |||||
Definition | Id of the variantset in this external repository. The server will understand how to use this id to call for more info about variantsets in external repository. | ||||
Short | Id of the variantset that used to call for variantset in repository | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
162. MolecularSequence.repository.readsetId | |||||
Definition | Id of the read in this external repository. | ||||
Short | Id of the read | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
164. MolecularSequence.repository:genome-entity-db | |||||
Slice Name | genome-entity-db | ||||
Definition | Configurations of the external repository. The repository shall store target's observedSeq or records related with target's observedSeq. | ||||
Short | External repository which contains detailed report related with observedSeq in this resource | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
166. MolecularSequence.repository:genome-entity-db.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
168. MolecularSequence.repository:genome-entity-db.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.repository.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
170. MolecularSequence.repository:genome-entity-db.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
172. MolecularSequence.repository:genome-entity-db.type | |||||
Definition | Click and see / RESTful API / Need login to see / RESTful API with authentication / Other ways to see resource. | ||||
Short | directlink | openapi | login | oauth | other | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from repositoryType (required to http://hl7.org/fhir/ValueSet/repository-type|4.0.1 )Type for access of external URI. | ||||
Type | code | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Pattern Value | other | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
174. MolecularSequence.repository:genome-entity-db.url | |||||
Definition | URI of an external repository which contains further details about the genetics data. | ||||
Short | URI of the repository | ||||
Comments | see http://en.wikipedia.org/wiki/Uniform_resource_identifier | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | uri | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
176. MolecularSequence.repository:genome-entity-db.name | |||||
Definition | The database used to precisely name the molecular entity. | ||||
Short | The database listing the molecular entity | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
178. MolecularSequence.repository:genome-entity-db.datasetId | |||||
Definition | The identifier of the molecular entity in the database. | ||||
Short | Molecular entity identifier | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 1..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
180. MolecularSequence.repository:genome-entity-db.variantsetId | |||||
Definition | Id of the variantset in this external repository. The server will understand how to use this id to call for more info about variantsets in external repository. | ||||
Short | Id of the variantset that used to call for variantset in repository | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
182. MolecularSequence.repository:genome-entity-db.readsetId | |||||
Definition | Id of the read in this external repository. | ||||
Short | Id of the read | ||||
Comments | Note that FHIR strings SHALL NOT exceed 1MB in size | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | string | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
184. MolecularSequence.pointer | |||||
Definition | Pointer to next atomic sequence which at most contains one variant. | ||||
Short | Pointer to next atomic sequence | ||||
Comments | References SHALL be a reference to an actual FHIR resource, and SHALL be resolveable (allowing for access control, temporary unavailability, etc.). Resolution can be either by retrieval from the URL, or, where applicable by resource type, by treating an absolute reference as a canonical URL and looking it up in a local registry/repository. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Reference(MolecularSequence) | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ref-1: SHALL have a contained resource if a local reference is provided ( reference.startsWith('#').not() or (reference.substring(1).trace('url') in %rootResource.contained.id.trace('ids')) ) | ||||
186. MolecularSequence.structureVariant | |||||
Definition | Information about chromosome structure variation. | ||||
Short | Structural variant | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
188. MolecularSequence.structureVariant.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
190. MolecularSequence.structureVariant.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.structureVariant.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
192. MolecularSequence.structureVariant.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
194. MolecularSequence.structureVariant.variantType | |||||
Definition | Information about chromosome structure variation DNA change type. | ||||
Short | Structural variant change type | ||||
Comments | Not all terminology uses fit this general pattern. In some cases, models should not use CodeableConcept and use Coding directly and provide their own structure for managing text, codings, translations and the relationship between elements and pre- and post-coordination. | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Binding | The codes SHALL be taken from LOINC Answer List LL379-9|4.0.1 (required to http://loinc.org/vs/LL379-9|4.0.1 )DNA change type. | ||||
Type | CodeableConcept | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
196. MolecularSequence.structureVariant.exact | |||||
Definition | Used to indicate if the outer and inner start-end values have the same meaning. | ||||
Short | Does the structural variant have base pair resolution breakpoints? | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | boolean | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
198. MolecularSequence.structureVariant.length | |||||
Definition | Length of the variant chromosome. | ||||
Short | Structural variant length | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
200. MolecularSequence.structureVariant.outer | |||||
Definition | Structural variant outer. | ||||
Short | Structural variant outer | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
202. MolecularSequence.structureVariant.outer.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
204. MolecularSequence.structureVariant.outer.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.structureVariant.outer.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
206. MolecularSequence.structureVariant.outer.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
208. MolecularSequence.structureVariant.outer.start | |||||
Definition | Structural variant outer start. If the coordinate system is either 0-based or 1-based, then start position is inclusive. | ||||
Short | Structural variant outer start | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
210. MolecularSequence.structureVariant.outer.end | |||||
Definition | Structural variant outer end. If the coordinate system is 0-based then end is exclusive and does not include the last position. If the coordinate system is 1-base, then end is inclusive and includes the last position. | ||||
Short | Structural variant outer end | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
212. MolecularSequence.structureVariant.inner | |||||
Definition | Structural variant inner. | ||||
Short | Structural variant inner | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | BackboneElement | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
214. MolecularSequence.structureVariant.inner.id | |||||
Definition | Unique id for the element within a resource (for internal references). This may be any string value that does not contain spaces. | ||||
Short | Unique id for inter-element referencing | ||||
Control | 0..1 | ||||
Type | string | ||||
XML Format | In the XML format, this property is represented as an attribute. | ||||
216. MolecularSequence.structureVariant.inner.extension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. | ||||
Short | Additional content defined by implementations | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Standards Status | Normative (from Trial Use) | ||||
Alternate Names | extensions, user content | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
Slicing | This element introduces a set of slices on MolecularSequence.structureVariant.inner.extension . The slices are unordered and Open, and can be differentiated using the following discriminators: | ||||
218. MolecularSequence.structureVariant.inner.modifierExtension | |||||
Definition | May be used to represent additional information that is not part of the basic definition of the element and that modifies the understanding of the element in which it is contained and/or the understanding of the containing element's descendants. Usually modifier elements provide negation or qualification. To make the use of extensions safe and manageable, there is a strict set of governance applied to the definition and use of extensions. Though any implementer can define an extension, there is a set of requirements that SHALL be met as part of the definition of the extension. Applications processing a resource are required to check for modifier extensions. Modifier extensions SHALL NOT change the meaning of any elements on Resource or DomainResource (including cannot change the meaning of modifierExtension itself). | ||||
Short | Extensions that cannot be ignored even if unrecognized | ||||
Comments | There can be no stigma associated with the use of extensions by any application, project, or standard - regardless of the institution or jurisdiction that uses or defines the extensions. The use of extensions is what allows the FHIR specification to retain a core level of simplicity for everyone. | ||||
Control | 0..* This element is affected by the following invariants: ele-1 | ||||
Type | Extension | ||||
Is Modifier | true because Modifier extensions are expected to modify the meaning or interpretation of the element that contains them | ||||
Summary | true | ||||
Requirements | Modifier extensions allow for extensions that cannot be safely ignored to be clearly distinguished from the vast majority of extensions which can be safely ignored. This promotes interoperability by eliminating the need for implementers to prohibit the presence of extensions. For further information, see the definition of modifier extensions. | ||||
Alternate Names | extensions, user content, modifiers | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) )ext-1: Must have either extensions or value[x], not both ( extension.exists() != value.exists() ) | ||||
220. MolecularSequence.structureVariant.inner.start | |||||
Definition | Structural variant inner start. If the coordinate system is either 0-based or 1-based, then start position is inclusive. | ||||
Short | Structural variant inner start | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) | ||||
222. MolecularSequence.structureVariant.inner.end | |||||
Definition | Structural variant inner end. If the coordinate system is 0-based then end is exclusive and does not include the last position. If the coordinate system is 1-base, then end is inclusive and includes the last position. | ||||
Short | Structural variant inner end | ||||
Comments | 32 bit number; for values larger than this, use decimal | ||||
Control | 0..1 This element is affected by the following invariants: ele-1 | ||||
Type | integer | ||||
Primitive Value | This primitive element may be present, or absent, or replaced by an extension | ||||
Summary | true | ||||
Invariants | ele-1: All FHIR elements must have a @value or children (hasValue() or (children().count() > id.count()) ) |