Sepehri Katayoun, Braley McKenzie Sarah, Chinda Betty, Zou Macy, Tang Brandon, Park Grace, Garm Antonina, McDermid Robert, Rockwood Kenneth, Song Xiaowei
Health Sciences and Innovation, Surrey Memorial Hospital, Surrey, BC, Canada.
Department of Computing Science, Simon Fraser University, Burnaby, BC, Canada.
Front Public Health. 2020 Mar 31;8:89. doi: 10.3389/fpubh.2020.00089. eCollection 2020.
Frailty is characterized by loss of biological reserves and is associated with an increased risk of adverse health outcomes. Frailty can be operationalized using a Frailty Index (FI) based on the accumulation of health deficits; items under health evaluation in the well-established Comprehensive Geriatric Assessment (CGA) have been used to generate an FI-CGA. Traditionally, constructing the FI-CGA has relied on paper-based recording and manual data processing. As this can be time-consuming and error-prone, it limits widespread uptake of this proven type of frailty assessment. Here, we report the development of an electronic tool, the eFI-CGA, for use on personal computers by frontline healthcare providers, to collect CGA data and automate FI-CFA calculation. The ultimate goal is to support early identification and management of frailty at points-of-care, and make uptake in Electronic Medical Records (EMR) feasible and transparent. An electronic CGA (eCGA) form was implemented to operate on Microsoft's WinForms platform and coded using C# programming language. Users complete the eCGA form, from which items under the CGA evaluation are automatically retrieved and processed to output an eFI-CGA score. A user-friendly interface and secured data saving methods were implemented. The software was debugged and tested using systematically designed simulation data, addressing different logic, syntax, and application errors, and then tested with clinical assessment. The user manual and manual scoring were used as ground truth to compare eFI-CGA input and automated eFI score calculations. Frontline health-provider user feedback was incorporated to improve the end-user experience. The Standalone eFI-CGA software tool was developed and optimized for use on personal computers. The user interface adapted the design of paper-based CGA form to facilitate familiarity for clinical users. Compared to known scores, the software tool generated eFI-CGA scores with 100% accuracy to four decimal places. The eFI-CGA allowed secure data storage and retrieval of multiple types, including user input, completed eCGA form, coded items, and calculated eFI-CGA scores. It also permitted recording of actions requiring clinical follow-up, facilitating care planning. Application bugs were identified and resolved at various stages of the implementation, resulting in efficient system performance. Accurate, robust, and reliable computerized frailty assessments are needed to promote effective frailty assessment and management, as a key tool in health care systems facing up to frailty. Our research has enabled the delivery of the standalone eFI-CGA software technology to empower effective frailty assessment and management by various healthcare providers at points-of-care, facilitating integrated care of older adults.
衰弱的特征是生物储备的丧失,并与不良健康结局风险增加相关。衰弱可以通过基于健康缺陷积累的衰弱指数(FI)来实施;在成熟的综合老年评估(CGA)中进行健康评估的项目已被用于生成FI-CGA。传统上,构建FI-CGA依赖于纸质记录和手动数据处理。由于这可能既耗时又容易出错,它限制了这种经过验证的衰弱评估类型的广泛应用。在此,我们报告了一种电子工具eFI-CGA的开发,供一线医疗保健提供者在个人计算机上使用,以收集CGA数据并自动进行FI-CFA计算。最终目标是支持在医疗点早期识别和管理衰弱,并使电子病历(EMR)中的应用可行且透明。一个电子CGA(eCGA)表单在微软的WinForms平台上运行,并使用C#编程语言进行编码。用户填写eCGA表单,从中自动检索和处理CGA评估中的项目,以输出eFI-CGA分数。实现了用户友好的界面和安全的数据保存方法。该软件使用系统设计的模拟数据进行调试和测试,解决不同的逻辑、语法和应用错误,然后进行临床评估测试。用户手册和手动评分被用作基准,以比较eFI-CGA输入和自动的eFI分数计算。纳入了一线医疗保健提供者用户的反馈,以改善最终用户体验。独立的eFI-CGA软件工具被开发并优化用于个人计算机。用户界面采用了纸质CGA表单的设计,以便临床用户熟悉。与已知分数相比,该软件工具生成的eFI-CGA分数精确到四位小数,准确率为100%。eFI-CGA允许安全地存储和检索多种类型的数据,包括用户输入、完整的eCGA表单、编码项目和计算出的eFI-CGA分数。它还允许记录需要临床随访的行动,便于护理规划。在实施的各个阶段识别并解决了应用程序错误,从而实现了高效的系统性能。需要准确、强大且可靠的计算机化衰弱评估来促进有效的衰弱评估和管理,作为应对衰弱的医疗保健系统中的关键工具。我们的研究使得独立的eFI-CGA软件技术得以交付,以赋能各种医疗保健提供者在医疗点进行有效的衰弱评估和管理,促进老年人综合护理。