Comparison of FHIR ValueSet: servicerequest-category
A comparison was performed between two instances of the FHIR ValueSet 'servicerequest-category'. This comparison utilized the StarsApi framework for analysis.
3,961 FHIR-related articles (latest first)
A comparison was performed between two instances of the FHIR ValueSet 'servicerequest-category'. This comparison utilized the StarsApi framework for analysis.
Epic Systems provided specifications regarding the handling of FHIR data. This process ensures that data loaded from external FHIR servers maintains the format it was originally received in.
医療データ標準化のYuimedi、NECによるNDBおよび電子カルテ情報のOMOP変換実証を技術支援 エキサイト □NECからのコメント本プロジェクトでは、レセプト・DPC・HL7 FHIR処方データの合成データを国際的な共通規格OMOP CDM(共通データモデル)へ変換し、研究者が実際 ... Facebook Twitter
Pontegra Software Technologies is working on enabling secondary use of MII/DIZ data. This initiative utilizes FHIR standards to facilitate data access and secondary use within Germany.
A new LOINC code (101397-8) was published for copy number variation analysis in blood or tissue by sequencing. This standardizes the reporting of genetic test results within healthcare interoperability systems.
Epic provided technical specifications regarding a specific FHIR API. This API is noted to differ from the existing Specimen.Search (Patient Chart) (R4) functionality.
Altarum is undertaking an implementation project using FHIR standards. This initiative aims to achieve faster and more standardized data exchange for vital records.
FHIR-based APIs are presented as a solution for managing prior authorization delays. This technology enables structured and fast data exchange in healthcare.
The FHIR Server made available content for LOINC Code 36421-6, which pertains to CTA Upper extremity vessels. This update ensures standardized data representation for vascular imaging procedures within the FHIR framework.
The FHIR Specification details its operations framework, which supports the definition of custom operations. This feature expands the capabilities of FHIR for specialized use cases.
Many healthcare organizations are adopting standard HL7 FHIR APIs. These APIs facilitate patient data access across different systems.
The HL7 FHIR at Scale Taskforce (FAST) is working to ensure trusted and scalable implementation of interoperability standards. This effort aims to advance nationwide exchange of health information.
Element provides services specializing in FHIR implementation and DevOps support. These services support continuous integration and operations.
A new LOINC code, 72670-3, was published for the Metanephrine, Normetanephrine, 3-Methoxytyramine and Creatinine panel. This code is available within the FHIR standard, facilitating standardized data exchange for laboratory results.
An adaptive intelligence platform is entering medical classrooms in India. Students are also receiving training in Medical Data Stewardship.
A training event was announced focusing on applying FHIR standards beyond technical development. The session aims to guide Business Analysts and Product Managers in utilizing FHIR for broader business analysis and product management tasks.
HL7 released LOINC Code 100760-8, which specifically identifies X-ray images of the radius and ulna. This integration ensures standardized coding for orthopedic imaging data within the FHIR ecosystem.
The NHS England developer community is actively discussing topics tagged with FHIR. This indicates ongoing development and adoption of FHIR standards within the UK healthcare sector.
The content provides a comprehensive guide on understanding FHIR Bundles within the ABDM framework. This resource is intended for professionals integrating with India's national digital health mission.
A new LOINC code, 58091-0, was established for the Glucose-6-Phosphate dehydrogenase newborn screen panel. This code supports standardized data exchange for newborn screening results using FHIR standards.