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开发心血管计算机化医嘱录入 (CPOE) 的最小数据集并将数据集映射到 FHIR:一种多方法途径。

Developing a minimum data set for cardiovascular Computerized Physician Order Entry (CPOE) and mapping the data set to FHIR: A multi-method approach.

机构信息

Department of Health Information Sciences, Faculty of Management and Medical Information Sciences, Kerman University of Medical Sciences, Kerman, Iran.

Cardiovascular Research Center, Institute of Basic and Clinical Physiology Science, Kerman University of Medical Sciences, Kerman, Iran.

出版信息

J Med Syst. 2023 Apr 14;47(1):47. doi: 10.1007/s10916-023-01943-2.

Abstract

Many medical errors occur in the process of treating cardiovascular patients, and most of these errors are related to prescription errors. There are several, one of the methods to prevent prescription errors is the use of a computerized physician order entry (CPOE) system. One of the obstacles of implementing this system is improper design and non-compliance with user needs. one of the issues that should be considered in designing information systems is having a standard minimum data set (MDS). Although many computerized physicians order entry (CPOE) systems have been developed in the world, no study has identified the necessary data and minimum data set (MDS) of CPOE system, and published the process of creating this MDS. This study aimed to develop an MDS for cardiovascular CPOE and standardize it with Fast Healthcare Interoperability Resources (FHIR). A multi-method approach including systematic review for identifying data elements of CPOE, reviewing the content of medical records, validation of the data elements using the expert panel and, determination of the necessary data elements using a survey was conducted. Classification of the data elements and mapping them to FHIR were done to facilitate data sharing and integration with the electronic health record (EHR) system as well as to reduce data diversity. The final data elements of MDS were categorized into 5 main categories of FHIR (foundation, base, clinical, financial, and specialized) and 146 resources, where possible. Mapping was done by one of the researchers and checked and verified by the second researcher. Non-mapped data elements were added to relevant resources as extensions of existing FHIR resources. In total, 270 data elements were identified from the systematic review. After reviewing the content of 20 patients' medical records, 28 data elements were identified. After combination of data elements of two previous phases and removing duplication, 282 data elements remained. Data elements that were considered necessary to be included in CPOE by conducting a survey among cardiovascular physicians were 109 elements. From 146 resources of FHIR, the data elements of this MDS are covered by 5 resources. This study introduced an MDS for cardiovascular CPOE by combining suggested data elements of previous research, and the practical and local requirements identified in patients' medical records. To facilitate data sharing and integration with EHR, reduce data diversity, and also to categorize data, this MDS was standardized with FHIR. The steps we used to develop this MDS could be a model for creating MDS in other CPOEs and health information systems. This is the first time that the process of developing an MDS for cardiovascular CPOE has been presented in the literature.

摘要

许多医疗错误发生在心血管患者的治疗过程中,其中大多数与处方错误有关。有几种方法可以预防处方错误,其中一种方法是使用计算机化医生医嘱输入(CPOE)系统。实施该系统的障碍之一是设计不当和不符合用户需求。在设计信息系统时需要考虑的一个问题是拥有一个标准的最小数据集(MDS)。尽管世界上已经开发了许多计算机化医生医嘱输入(CPOE)系统,但没有一项研究确定了 CPOE 系统所需的数据和最小数据集(MDS),也没有发表创建这个 MDS 的过程。本研究旨在开发心血管 CPOE 的 MDS,并使用快速医疗互操作性资源(FHIR)对其进行标准化。采用多方法学方法,包括系统评价以确定 CPOE 的数据元素,审查病历内容,使用专家小组验证数据元素,并通过调查确定所需的数据元素。对数据元素进行分类,并将其映射到 FHIR 中,以方便数据共享和与电子健康记录(EHR)系统集成,并减少数据多样性。MDS 的最终数据元素分为 FHIR 的 5 个主要类别(基础、基础、临床、财务和专业)和 146 个资源,尽可能归类。映射由一名研究人员完成,并由第二名研究人员检查和验证。未映射的数据元素被添加到现有 FHIR 资源的相关资源中作为扩展。总共从系统评价中确定了 270 个数据元素。在审查了 20 名患者的病历内容后,确定了 28 个数据元素。在前两个阶段的数据元素组合并去除重复后,仍有 282 个数据元素。通过对心血管医生进行调查,确定了包含在 CPOE 中的 109 个数据元素。从 FHIR 的 146 个资源中,这个 MDS 的数据元素由 5 个资源涵盖。本研究通过结合先前研究中提出的数据元素和从患者病历中确定的实际和本地要求,为心血管 CPOE 引入了一个 MDS。为了方便数据共享和与 EHR 的集成,减少数据多样性,并对数据进行分类,这个 MDS 与 FHIR 进行了标准化。我们用于开发这个 MDS 的步骤可以作为在其他 CPOE 和健康信息系统中创建 MDS 的模型。这是首次在文献中介绍心血管 CPOE 的 MDS 开发过程。

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