肿瘤学领域电子健康记录信息模型的再利用:生物框架研究。

IF 4 2区 医学 Q2 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Rodrigo Bonacin , Elaine Barbosa de Figueiredo , Ferrucio de Franco Rosa , Julio Cesar dos Reis , Mariangela Dametto
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引用次数: 0

摘要

目的:电子健康记录(EHR)信息模型(如模板和原型)的重复使用可能带来各种好处,包括更高的标准化、集成性和互操作性,提高开发 EHR 系统的生产力,以及释放建立在医疗记录之上的人工智能应用的潜力。文献介绍了电子病历建模标准、知识组织系统(KOS)和电子病历数据重用方面的最新进展。然而,改善电子病历信息模型重用的方法、开发流程和框架仍然匮乏。本研究提出了一个名为 BioFrame 的软件工程框架,并分析了如何在开发电子病历系统的过程中提高电子病历信息模型的重用性:方法:在开发 BioFrame 框架时,考虑了从系统综述中确定的电子病历标准和 KOS(包括本体)。我们利用 OpenEHR 的结构为模板和原型建模,并将其与肿瘤学领域使用的国际 KOS 联系起来。我们的框架适用于儿科肿瘤学。为了衡量信息模型的重复使用情况,我们分析了三份有关营养的数据输入表和一份儿科肿瘤首次会诊时使用的数据输入表:结果:与原始表格相比,国际 KOS 的遵守率提高了 18%。在分析的所有 12 个方案中,重复使用的概念都有所增加,原始表格的平均重复使用率为 6.55%,而使用 BioFrame 的重复使用率为 17.1%,差异显著:我们的研究结果表明,由于工程设计过程更严格遵守电子病历标准并结合语义人工制品,实现了更高的重复利用率。这揭示了开发旨在实现电子病历信息模型再利用的新方法和框架的潜力。还需要进行更多的研究,以评估电子病历信息模型的再利用对互操作性、电子病历数据再利用和数据质量的影响,并评估在其他健康领域提出的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The reuse of electronic health records information models in the oncology domain: Studies with the bioframe framework

The reuse of electronic health records information models in the oncology domain: Studies with the bioframe framework

Objective:

The reuse of Electronic Health Records (EHR) information models (e.g., templates and archetypes) may bring various benefits, including higher standardization, integration, interoperability, increased productivity in developing EHR systems, and unlock potential Artificial Intelligence applications built on top of medical records. The literature presents recent advances in standards for modeling EHR, in Knowledge Organization Systems (KOS) and EHR data reuse. However, methods, development processes, and frameworks to improve the reuse of EHR information models are still scarce. This study proposes a software engineering framework, named BioFrame, and analyzes how the reuse of EHR information models can be improved during the development of EHR systems.

Methods:

EHR standards and KOS, including ontologies, identified from systematic reviews were considered in developing the BioFrame framework. We used the structure of the OpenEHR to model templates and archetypes, as well as its relationship to international KOS used in the oncology domain. Our framework was applied in the context of pediatric oncology. Three data entry forms concerning nutrition and one utilized during the first pediatric oncology consultations were analyzed to measure the reuse of information models.

Results:

There was an increase in the adherence rate to international KOS of 18% to the original forms. There was an increase in the concepts reused in all 12 scenarios analyzed, with an average reuse of 6.55% in the original forms compared to 17.1% using BioFrame, resulting in significant differences.

Conclusions:

Our results point to higher reuse rates achieved due to an engineering process that provided greater adherence to EHR standards combined with semantic artifacts. This reveals the potential to develop new methods and frameworks aimed at EHR information model reuse. Additional research is needed to evaluate the impacts of the reuse of the EHR information model on interoperability, EHR data reuse, and data quality and assess the proposed framework in other health domains.

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来源期刊
Journal of Biomedical Informatics
Journal of Biomedical Informatics 医学-计算机:跨学科应用
CiteScore
8.90
自引率
6.70%
发文量
243
审稿时长
32 days
期刊介绍: The Journal of Biomedical Informatics reflects a commitment to high-quality original research papers, reviews, and commentaries in the area of biomedical informatics methodology. Although we publish articles motivated by applications in the biomedical sciences (for example, clinical medicine, health care, population health, and translational bioinformatics), the journal emphasizes reports of new methodologies and techniques that have general applicability and that form the basis for the evolving science of biomedical informatics. Articles on medical devices; evaluations of implemented systems (including clinical trials of information technologies); or papers that provide insight into a biological process, a specific disease, or treatment options would generally be more suitable for publication in other venues. Papers on applications of signal processing and image analysis are often more suitable for biomedical engineering journals or other informatics journals, although we do publish papers that emphasize the information management and knowledge representation/modeling issues that arise in the storage and use of biological signals and images. System descriptions are welcome if they illustrate and substantiate the underlying methodology that is the principal focus of the report and an effort is made to address the generalizability and/or range of application of that methodology. Note also that, given the international nature of JBI, papers that deal with specific languages other than English, or with country-specific health systems or approaches, are acceptable for JBI only if they offer generalizable lessons that are relevant to the broad JBI readership, regardless of their country, language, culture, or health system.
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