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Model-Referenced Cardiovascular Circulatory Simulator: Construction and Control

机译:模型参考心血管循环模拟器:施工与控制

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摘要

Physiological feasibility is the most important requirement for cardiovascular circulatory simulators (CCSs). However, previous simulators have been validated by a comparison with specific human data sets, which are valid only for very limited conditions, and so it is difficult to validate the fidelity of a CCS for various body conditions. To overcome this critical limitation, we propose a model-referenced CCS that reproduces the behavior of an electrical-analog model of the cardiovascular circulatory system, for which physiological fidelity is well established over a wide range. In this study, the electrical-analog reference model was realized in the hardware simulator using fluidic element modeling and by the feedback control of a mock ventricle. The proposed simulator showed a good match with the reference model behavior, and its physiological validity was thereby verified. The proposed simulator is able to show responsiveness to various body conditions as well. To the best of the author's knowledge, this is the first report of an in vitro CCS verified to be consistent with reference model behavior.
机译:生理可行性是心血管循环模拟器(CCSS)最重要的要求。然而,通过与特定人体数据集的比较验证了先前的模拟器,其仅用于非常有限的条件,因此难以验证CCS的各种身体状况的保真度。为了克服这种关键限制,我们提出了一种模型引用的CCS,其再现心血管循环系统的电模型模型的行为,其中生理保真度在很广泛的范围内。在本研究中,使用流体元素建模和模拟脑室的反馈控制在硬件模拟器中实现了电模拟参考模型。所提出的模拟器与参考模型行为显示出良好的匹配,从而验证了其生理有效性。所提出的模拟器也能够对各种身体状况显示响应性。据笔者所知的最佳知识,这是验证的体外CCS的第一份报告与参考模型行为一致。

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