Oracle Cloud Infrastructure (OCI) proposes a hybrid architecture that separates local hospital integration from broad, enterprise-level data exchange. This approach enables modern healthcare interoperability—utilizing FHIR APIs and AI services—while allowing organizations to maintain existing system investments.
Three hospitals in the Bayside Health network integrated a third-party application into the Oracle Health Foundation EHR using FHIR standards. This allows pharmacists to manage dosing adjustments and documentation directly within the electronic health record, reducing manual entry effort and errors.
Vysio has developed an end-to-end platform that acquires data from wearable hemodynamic monitors via a BLE gateway, standardizes it using FHIR R4, and integrates it into hospital EMRs using standards like HL7v2. This enables the automatic linkage of real-time vital sign information to multiple major EMR systems.
This article introduces a reference architecture built on Oracle Cloud Infrastructure (OCI) designed to handle bursty traffic while optimizing costs for HL7, EDI, and FHIR data processing. This approach aims to reduce risks associated with delays in healthcare data intake and transaction processing.
SMART on FHIRは、FHIRを基盤とし、アプリケーションが電子カルテ(EHR)内で安全に起動するためのプラットフォーム層である。OAuth2やOpenID Connectに基づく認証プロファイル、および現在の患者情報からアプリアクセスを開始できるコンテキストを提供し、サードパーティ機能の組み込みを可能にする。
Fire Arrow provides a backend for centralizing and managing data from various sources, including EHRs and legacy systems, through the FHIR standard. This enables diverse data utilization cases such as AI agents and remote patient monitoring.
HDIM connects to existing Electronic Health Record (EHR) systems, evaluating FHIR resources and CQL measures to provide high-quality intelligence necessary for clinical workflows. This enables care gap detection and risk stratification.
Using Oracle Cloud Infrastructure, users can edit the name and description of custom FHIR resources. Access is available from both project-based or standalone environments, allowing for the generation and application of new descriptions using AI features.
Although the Electronic Medical Record (KIS) market continues to grow, many hospitals are delaying decisions. They are no longer seeking traditional stand-alone software but rather cloud-capable platforms that integrate interoperability, AI, and replacement for legacy systems.
This page provides the interface and detailed technical specifications for searching FHIR resources. Users can select from standard schema definitions, FHIR profiles, or custom FHIR resources, configuring HTTP methods and search parameters accordingly.
This article explains the process of automatically converting natural language search queries into FHIR format, enabling execution against compliant servers. Users can edit and update these generated query parameters to perform advanced searches that meet complex business requirements.
Oracle
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.
EndpointHealth offers secure, context-aware messaging and FHIR-native workflows to streamline clinical communication. By integrating with patient/provider registries and EHRs, the solution enables advanced searching and data referencing based on accurate information.
Synthetic EHR offers a platform that accelerates healthcare innovation through strategic partnerships and developer ecosystem collaboration, built on privacy-first principles. By utilizing FHIR-native synthetic data, it removes regulatory barriers and achieves seamless integration via an API-first approach.
This article explains how to view the contents of a FHIR profile package in both project-based and standalone environments. It details the mechanism of 'Extensions,' which allows users to add user-defined data elements beyond the core structure.
FHIR
When searching for FHIR resources, the query parameter `_sort` can be used to sort the returned results based on specific criteria. This allows developers to precisely control the display order of the retrieved data.
This document details how to retrieve specimen data using the FHIR R4 API on the Oracle Health Millennium Platform. It demonstrates that multiple specimens can be searched and retrieved in a single request by utilizing resource IDs and query parameters.
According to HTF Market Intelligence, the global healthcare interoperability solution market is projected to grow from USD 3.9 billion in 2024 to USD 9.9 billion by 2031, with a CAGR of 14%. The report analyzes the structure and trends of this market, driven by major companies like Oracle Health and Epic Systems.
Connecting to the FHIR Adapter using Oracle Integration requires multiple advanced security and authentication settings, including OAuth, SSL endpoints, and JWT assertions. These are mandatory steps for a client application to establish access to resource servers.
Oracle
MEDITECH utilized the FHIR standard to establish a connection between hospitals and Long-Term Care (LTC) facilities in Ontario.
Ontario hospitalsLTC Canadian Healthcare