正常与异常状态下心脏瓣膜流速模式的数值模拟

K. Hemalatha, M. Manivannan, S. Thanikachalam
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引用次数: 2

摘要

本文的目的是利用电等效集总参数心血管系统(CVS)模型模拟心脏瓣膜在正常和异常状态下的流速模式,并通过真实受试者的超声心动图进行验证。我们的模型由仰卧的人的CVS与气压反射控制的详细表示。心脏瓣膜具有电阻、惯性和伯努利阻力的特点,以准确地模拟生理瓣膜的非线性湍流特性。收集真实瓣膜异常患者的超声心动图。在灵敏度分析的基础上,通过调整适当的参数,在模型中实现回波衍生指标。模拟的血流速度分布与超声心动图吻合较好,模型推导的血流动力学指标与实际数据吻合较好。因此,我们的模型能够模拟更复杂的二尖瓣狭窄和二尖瓣、三尖瓣、肺动脉瓣和主动脉瓣反流的血流动力学原理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation of cardiac valve flow velocity patterns in normal and abnormal conditions
Objectives of this paper are to simulate flow velocity patterns of cardiac valves in normal and abnormal conditions using electrical equivalent lumped parameter Cardiovascular System (CVS) model and validate with real subjects' echocardiograph. Our model consists of detailed representation of supine human CVS with baroreflex control. Cardic valves are characterized by resistance, inertance and bernoulli's resistance to exactly mimic the nonlinear, turbulent flow nature of physiological valves. Echocardiographs of real patients with valve abnormalities are collected. Echo derived indexes are implemented in model by tuning appropriate parameters based on sensitivity analysis. The simulated flow velocity patterns are well matching with Echo Cardiograph and also the model derived hemodynamic indexes have good agreement with real data. Therefore, our model has the ability to simulate more complicated hemodynamic principles in mitral stenosis and regurgitation of mitral, tricuspid, pulmonary and aortic valves.
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