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标准化临床病例的计算机支持协作设计:算法开发与验证

Computer-Supported Collaborative Design of Standardized Clinical Cases: Algorithm Development and Validation.

作者信息

Guinez-Molinos Sergio, Buendía-García Félix, Sierra-Rodríguez José-Luis, Gayoso-Cabada Joaquín, González-Díaz Jaime

机构信息

School of Medicine, Universidad de Talca, Talca, Chile.

Escuela Técnica Superior de Ingeniería Informática, Universitat Politècnica de Valencia, Valencia, Spain.

出版信息

JMIR Med Inform. 2023 Sep 19;11:e45315. doi: 10.2196/45315.

Abstract

BACKGROUND

The creation of computer-supported collaborative clinical cases is an area of educational research that has been widely studied. However, the reuse of cases and their sharing with other platforms is a problem, as it encapsulates knowledge in isolated platforms without interoperability. This paper proposed a workflow ecosystem for the collaborative design and distribution of clinical cases through web-based computing platforms that (1) allow medical students to create clinical cases collaboratively in a dedicated environment; (2) make it possible to export these clinical cases in terms of the Health Level 7 (HL7) Fast Healthcare Interoperability Resources (FHIR) interoperability standard; (3) provide support to transform imported cases into learning object repositories; and (4) use e-learning standards (eg, Instructional Management Systems Content Packaging [IMS-CP] or Sharable Content Object Reference Model [SCORM]) to incorporate this content into widely-used learning management systems (LMSs), letting medical students democratize a valuable knowledge that would otherwise be confined within proprietary platforms.

OBJECTIVE

This study aimed to demonstrate the feasibility of developing a workflow ecosystem based on IT platforms to enable the collaborative creation, export, and deployment of clinical cases.

METHODS

The ecosystem infrastructure for computer-supported collaborative design of standardized clinical cases consists of three platforms: (1) Mosaico, a platform used in the design of clinical cases; (2) Clavy, a tool for the flexible management of learning object repositories, which is used to orchestrate the transformation and processing of these clinical cases; and (3) Moodle, an LMS that is geared toward publishing the processed clinical cases and delivering their course deployment stages in IMS-CP or SCORM format. The generation of cases in Mosaico is exported in the HL7 FHIR interoperability standard to Clavy, which is then responsible for creating and deploying a learning object in Moodle.

RESULTS

The main result was an interoperable ecosystem that demonstrates the feasibility of automating the stages of collaborative clinical case creation, export through HL7 FHIR standards, and deployment in an LMS. This ecosystem enables the generation of IMS-CPs associated with the original Mosaico clinical cases that can be deployed in conventional third-party LMSs, thus allowing the democratization and sharing of clinical cases to different platforms in standard and interoperable formats.

CONCLUSIONS

In this paper, we proposed, implemented, and demonstrated the feasibility of developing a standards-based workflow that interoperates multiple platforms with heterogeneous technologies to create, transform, and deploy clinical cases on the web. This achieves the objective of transforming the created cases into a platform for web-based deployment in an LMS.

摘要

背景

计算机支持的协作临床病例创建是一个已被广泛研究的教育研究领域。然而,病例的重复使用及其与其他平台的共享是一个问题,因为它将知识封装在孤立的、缺乏互操作性的平台中。本文提出了一种通过基于网络的计算平台进行临床病例协作设计和分发的工作流生态系统,该系统能够:(1)允许医学生在专用环境中协作创建临床病例;(2)能够按照健康级别7(HL7)快速医疗互操作性资源(FHIR)互操作性标准导出这些临床病例;(3)支持将导入的病例转换为学习对象存储库;(4)使用电子学习标准(如教学管理系统内容包[IMS-CP]或可共享内容对象参考模型[SCORM])将此内容整合到广泛使用的学习管理系统(LMS)中,使医学生能够将原本局限于专有平台的宝贵知识普及开来。

目的

本研究旨在证明基于信息技术平台开发工作流生态系统以实现临床病例的协作创建、导出和部署的可行性。

方法

用于计算机支持的标准化临床病例协作设计的生态系统基础设施由三个平台组成:(1)Mosaico,一个用于临床病例设计的平台;(2)Clavy,一个用于学习对象存储库灵活管理的工具,用于协调这些临床病例的转换和处理;(3)Moodle,一个LMS,旨在发布处理后的临床病例并以IMS-CP或SCORM格式交付其课程部署阶段。Mosaico中生成的病例按照HL7 FHIR互操作性标准导出到Clavy,然后由Clavy负责在Moodle中创建和部署学习对象。

结果

主要成果是一个可互操作的生态系统,证明了自动化协作临床病例创建、通过HL7 FHIR标准导出以及在LMS中部署等阶段的可行性。该生态系统能够生成与原始Mosaico临床病例相关的IMS-CP,并可在传统第三方LMS中部署,从而允许以标准和可互操作的格式将临床病例普及并共享到不同平台。

结论

在本文中,我们提出、实施并证明了开发一种基于标准的工作流的可行性,该工作流可使多种具有异构技术的平台实现互操作,以便在网络上创建、转换和部署临床病例。这实现了将创建的病例转换为可在LMS中基于网络部署的平台的目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/74b7/10547937/5af504968f13/medinform-v11-e45315-g001.jpg

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