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A computational model based on human performance for fluid management in critical care

机译:基于人类绩效的重症监护中液体管理的计算模型

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Computational simulation is one of the most important ways of reproducing the dynamic responses of a Cyber Physical System using a model of the system. The simulation discovers areas of differential system performance and allows linking such performance back to system characteristics. In the medical domain, patient simulators are used to train physicians in patient management. One critical question is how to verify these systems under realistic human (physician) input. This requires the creation of realistic human models that would be able to capture human cognitive and decision abilities and limitations. Verification of such an overall physician-patient model would result in two advantages: (a) since physicians realistically would not give all possible inputs to the system, verification could be more efficient and (b) the verification may uncover areas of poor human performance. In this paper, we describe our methodology and results in creating a computational model of human fluid management in critical care, based on human experiments.
机译:计算仿真是使用系统模型再现网络物理系统动态响应的最重要方法之一。仿真发现了差异系统性能的领域,并允许将这种性能链接回系统特性。在医学领域,患者模拟器用于培训医师患者管理。一个关键问题是如何在现实的人类(医师)输入下验证这些系统。这要求创建现实的人类模型,以能够捕捉人类的认知和决策能力与局限性。验证这样一个整体的医患模型将带来两个好处:(a)由于医生实际上不会为系统提供所有可能的输入,因此验证可能会更有效,并且(b)验证可能会发现人类绩效不佳的地方。在本文中,我们将基于人类实验描述我们的方法和结果,以建立重症监护中的人类体液管理计算模型。

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