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Parameterized real operations based model for heart's valves with aortic stenosis

机译:基于基于Real Operation的心脏瓣膜瓣膜瓣膜术的型号

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This work proposes a valve model that uses cardiac cycle phases and the flow control in order to model a closer representation of their operation based on its shape and values of the blood flow through the valve to study some dysfunctions such as aortic stenosis and how these affect cardiovascular dynamics. This dynamic model uses the 3 phases of a real valve operation; quick opening, slow closing, and quick closing, the shape for each phase is possible to simulate different slopes in the systolic and diastolic stages, and phase timing is coupled to the heart rate. Additionally one can use parameters to represent different hearts sizes. The valve model was implemented in VHDL-AMS for the electrical analog circuit replacing diodes. To simulate dynamic blood flow, the model was implemented in VENSIM, which allow for generation of blood flow velocity profiles and volumes. The simulation results present values in the reference ranges for a normal performance of the heart. This model will be helpful for independent valve's parameters change, so that each heart valves can be represented, also giving medical personnel to simulate several conditions such as the aortic stenosis
机译:这项工作提出了一种使用心循环阶段和流量控制的阀门模型,以便根据其通过阀门的血流的形状和血流的形状和值来研究它们的血液流动的较近表示,以研究一些功能障碍,例如主动脉狭窄和这些影响心血管动态。该动态模型采用实阀操作的3个阶段;快速打开,慢关闭和快速关闭,每个相的形状可以模拟收缩系统和舒张级中的不同斜率,并且相位定时耦合到心率。另外,人们可以使用参数来表示不同的心尺寸。阀门模型在VHDL-AM中实现,用于更换二极管的电气模拟电路。为了模拟动态血流,该模型在Vensim实施,允许产生血流速度谱和体积。仿真结果存在参考范围的值,用于心脏的正常性能。该模型将有助于独立阀门的参数变化,因此可以代表每个心阀,也给予医务人员模拟诸如主动脉狭窄等若干条件

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