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Modeling of an implantable device for remote arterial pressure measurement

机译:用于远程动脉压测量的植入装置的建模

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Cardiovascular diseases are the leading causes of illness and death in Europe, having a major impact on healthcare costs. An intelligent stent (e-stent), capable of obtaining and transmitting measurements of physiological parameters, can be a useful tool for real-time monitorization of arterial blockage without patient hospitalization. In this paper, a behavioral model of a pressure sensing-based e-stent is proposed and simulated under several restenosis conditions. Special attention has been given to the need of an accurate fault model, obtained from realistic finite-element simulations, to ensure long-term reliability; particularly for those faults whose behavior cannot be described by usual analytical models.
机译:心血管疾病是欧洲疾病和死亡的主要原因,对医疗费用产生重大影响。能够获得和传递生理参数的测量的智能支架(电子支架)可以是实时监测动脉堵塞而不患者住院的有用工具。在本文中,提出了一种基于压力感测的e-支架的行为模型,并在几种再狭窄条件下模拟。特别注意需要精确的故障模型,从现实的有限元模拟中获得,以确保长期可靠性;特别是对于通常无法通过通常的分析模型来描述其行为的故障。

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