This page captures a response from the HAPI FHIR test server, displaying multiple healthcare resources (Basic, Task) in Bundle format. It confirms the change history and status of these resources. Specifically, it demonstrates concrete examples of using the FHIR API, such as deleting resource history using the DELETE method and creating new Task resources via POST.
Computable Publishing LLC provides a 'Resource Viewer' as part of the FEvIR® platform. This tool allows users to view specific medical resources using an FHIR Linking Identifier.
This article explains how to browse the contents of an imported FHIR profile package. It details access methods in both project and standalone environments, and describes how to view segments, elements, and especially the customizable 'Extensions' within a resource.
JTX points out that the failure of healthcare information system integration is not merely a technical issue, but an 'ownership' problem. They support architectural design to achieve reliable data flows in environments where diverse standards like HL7 v2 and FHIR coexist.
The article compares HL7 and FHIR, two standards for health data exchange designed for different purposes. It explains that while HL7 is a long-standing standard (especially v2), FHIR is a newer standard built for modern cloud and mobile environments, suggesting which is better suited for mental healthcare.
tlq-fhir-registry-client is a Rust development tool designed for loading and caching FHIR packages. This client provides functionality to search and download packages from the Simplifier registry, in addition to using local cache, handling version resolution and dependency management.
Gino Canessa of Microsoft Research spoke at FHIR Camp 2024 about the importance of community within the FHIR ecosystem and future technical trends. He highlighted expectations for R6 migration and increased adoption of subscriptions, while also noting the difficulty in maintaining 'intimacy' as events grow larger.
In an interview, FHIR founder Grahame Grieve discussed the importance of community and the role of AI. He stated that it is crucial for FHIR to remain open and accessible, expressing high expectations for its adoption and expansion in low-income countries like Africa.
This article explains how to manage Identity and Access Management (IAM) access for a Google Cloud Platform (GCP) Healthcare FHIR Store using Pulumi resources. It details the process of implementing access control to the FHIR store.
Major digital health, healthcare IT, and medtech conferences are scheduled globally in 2025. The list compiles must-attend summits focusing on interoperability standards like FHIR and the latest patient-facing technologies, offering opportunities to grasp overall industry trends.
Statistics related to FHIR are made available through the 'External Validation Service Front-end,' provided by IHE. This tool offers a platform that supports healthcare interoperability and is usable by developers and stakeholders.
This article describes a real-time dashboard that optimizes blood product utilization using a FHIR-based data integration pipeline. The system aims to aggregate and process data from multiple sources (such as HIS, LIS) to support clinical decision-making.
IHE (Integrating the Heathcare Enterprise) provides validation functionality for FHIR resources and requests through its external validation service front-end. This system aims to improve standardization and connectivity in healthcare information exchange, with development contributions from INRIA and KEREVAL/MIR.
The Ministry of Health and Welfare revised the standards for healthcare data terminology and transmission. This revision introduced four key data items—such as end-of-life care preferences, prescription dates, alcohol/smoking status—and expanded the application of international vocabulary standards (SNOMED CT and ATC) to five items.
This page provides a comprehensive reference for FHIR's 'Data Type Profiles,' cataloging structured specifications for medical data from various countries and regions (e.g., USA, Canada, Australia).
Whitefox.cloud offers a solution to transform existing data into FHIR format. This enables healthcare organizations to standardize complex datasets quickly and securely, thereby enhancing interoperability.