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首页> 外文期刊>Journal of medical Internet research >A Framework for Different Levels of Integration of Computational Models Into Web-Based Virtual Patients
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A Framework for Different Levels of Integration of Computational Models Into Web-Based Virtual Patients

机译:将计算模型集成到基于Web的虚拟患者中的不同级别的框架

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Background: Virtual patients are increasingly common tools used in health care education to foster learning of clinical reasoning skills. One potential way to expand their functionality is to augment virtual patients’ interactivity by enriching them with computational models of physiological and pathological processes.Objective: The primary goal of this paper was to propose a conceptual framework for the integration of computational models within virtual patients, with particular focus on (1) characteristics to be addressed while preparing the integration, (2) the extent of the integration, (3) strategies to achieve integration, and (4) methods for evaluating the feasibility of integration. An additional goal was to pilot the first investigation of changing framework variables on altering perceptions of integration.Methods: The framework was constructed using an iterative process informed by Soft System Methodology. The Virtual Physiological Human (VPH) initiative has been used as a source of new computational models. The technical challenges associated with development of virtual patients enhanced by computational models are discussed from the perspectives of a number of different stakeholders. Concrete design and evaluation steps are discussed in the context of an exemplar virtual patient employing the results of the VPH ARCH project, as well as improvements for future iterations.Results: The proposed framework consists of four main elements. The first element is a list of feasibility features characterizing the integration process from three perspectives: the computational modelling researcher, the health care educationalist, and the virtual patient system developer. The second element included three integration levels: basic, where a single set of simulation outcomes is generated for specific nodes in the activity graph; intermediate, involving pre-generation of simulation datasets over a range of input parameters; advanced, including dynamic solution of the model. The third element is the description of four integration strategies, and the last element consisted of evaluation profiles specifying the relevant feasibility features and acceptance thresholds for specific purposes. The group of experts who evaluated the virtual patient exemplar found higher integration more interesting, but at the same time they were more concerned with the validity of the result. The observed differences were not statistically significant.Conclusions: This paper outlines a framework for the integration of computational models into virtual patients. The opportunities and challenges of model exploitation are discussed from a number of user perspectives, considering different levels of model integration. The long-term aim for future research is to isolate the most crucial factors in the framework and to determine their influence on the integration outcome.
机译:背景:虚拟患者越来越多地用于医疗保健教育中,以促进对临床推理技能的学习。扩展其功能的一种潜在方法是通过增加虚拟患者的生理和病理过程的计算模型来增强虚拟患者的交互性。目的:本文的主要目的是为虚拟患者中的计算模型的集成提出一个概念框架,特别关注(1)准备整合时要解决的特征,(2)整合的程度,(3)实现整合的策略以及(4)评估整合可行性的方法。另一个目标是,通过改变集成的观念,对改变框架变量的第一个研究进行试验。方法:使用软系统方法学告知的迭代过程构建框架。虚拟生理人(VPH)计划已被用作新的计算模型的来源。从许多不同的利益相关者的角度讨论了与通过计算模型增强的虚拟患者的发展相关的技术挑战。在示例性虚拟患者的背景下,使用VPH ARCH项目的结果讨论了具体的设计和评估步骤,并对未来的迭代进行了改进。结果:拟议的框架由四个主要元素组成。第一个要素是从三个角度描述集成过程的可行性特征列表:计算模型研究人员,卫生保健教育人员和虚拟患者系统开发人员。第二个元素包括三个集成级别:基本级别,其中为活动图中的特定节点生成一组模拟结果;中级,涉及在一系列输入参数上预先生成模拟数据集;高级,包括模型的动态解决方案。第三个要素是对四种整合策略的描述,最后一个要素由评估配置文件组成,这些评估文件指定了相关的可行性特征和用于特定目的的接受阈值。评估虚拟患者样本的专家组发现更高的集成度更有趣,但与此同时,他们更关注结果的有效性。结论:本文概述了将计算模型集成到虚拟患者中的框架。考虑到不同级别的模型集成,从多个用户角度讨论了模型开发的机遇和挑战。未来研究的长期目标是隔离框架中最关键的因素,并确定它们对整合结果的影响。

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