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犬体循环动脉系统的指数锥形T型管模型

Exponentially tapered t-tube model of systemic arterial system in dogs.

作者信息

Chang K C, Tseng Y Z, Lin Y J, Kuo T S, Chen H I

机构信息

Department of Physiology, College of Medicine, National Taiwan University.

出版信息

Med Eng Phys. 1994 Sep;16(5):370-8. doi: 10.1016/1350-4533(90)90003-q.

Abstract

This study determines the role of an asymmetric T-tube model as a representation of arterial mechanical properties. The model consists of two non-uniform tubes connected in parallel. The non-uniform properties of each tube include geometric and elastic tapering and each tube terminates in a complex load. Pulsatile pressure and flow velocity of the ascending aorta were measured in 10 closed-chest, anaesthetized dogs. An exponentially tapered transmission line is used to describe the non-uniform properties of the vasculature. The phase constant is a function of position along the path length due to geometric and elastic tapers. This non-uniform T-tube model makes it possible to fit the measured pressure waveform in the ascending aorta. Model parameters could be estimated and used to interpret the physical properties of the arterial system. The mathematical and experimental model impedance spectra are similar. There is a close correspondence between the impedance parameters derived from the non-uniform T-tube model and values computed from measurements on dogs. The results suggest that inclusion of tube tapering improves the mathematical model so that it closely represents the experimentally derived arterial impedance in closed-chest dogs. We conclude that the non-uniform properties of wave-transmission paths may play an important role in governing the behaviour of an asymmetric T-tube for the description of the arterial system.

摘要

本研究确定了非对称T型管模型作为动脉力学特性表征的作用。该模型由两根并联的非均匀管组成。每根管子的非均匀特性包括几何形状和弹性渐变,并且每根管子都终止于一个复杂的负载。在10只开胸麻醉犬中测量了升主动脉的脉动压力和流速。采用指数渐变传输线来描述血管系统的非均匀特性。由于几何形状和弹性渐变,相位常数是沿路径长度位置的函数。这种非对称T型管模型能够拟合升主动脉中测量的压力波形。可以估计模型参数并用于解释动脉系统的物理特性。数学模型和实验模型的阻抗谱相似。从非对称T型管模型导出的阻抗参数与根据犬类测量计算的值之间存在密切对应关系。结果表明,包含管子渐变可改善数学模型,使其紧密代表开胸犬实验得出的动脉阻抗。我们得出结论,波传播路径的非均匀特性可能在控制非对称T型管行为以描述动脉系统方面发挥重要作用。

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