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动脉壁物理模型中的液压输入阻抗测量。

Hydraulic input impedance measurements in physical models of the arterial wall.

作者信息

Papageorgiou G L, Jones N B

机构信息

Department of Engineering, University of Leicester, UK.

出版信息

J Biomed Eng. 1989 Nov;11(6):471-7. doi: 10.1016/0141-5425(89)90042-3.

Abstract

A white noise method was used to measure the hydraulic input impedance and transmission characteristics in physical models of an arterial system made of single, unbranched latex tubes. The experimentally obtained impedance curves show a rise in modulus and a positive phase at high frequencies in the absence of wave reflections. Using the impedance moduli in the presence of wave reflections, wave velocity and attenuation were calculated. The influence of wall nonlinearity on hydraulic impedance was also examined. It is concluded that, in the model used neither wave reflections nor wall nonlinearity can account for the deviations of the experimental impedance curves from the theoretically predicted ones. Impedance moduli in the presence of reflections may be used to study transmission characteristics (wave velocity and attenuation) of the model.

摘要

采用白噪声方法测量了由单根无分支乳胶管制成的动脉系统物理模型中的液压输入阻抗和传输特性。实验获得的阻抗曲线表明,在没有波反射的情况下,高频时模量上升且相位为正。利用存在波反射时的阻抗模量,计算了波速和衰减。还研究了壁面非线性对液压阻抗的影响。得出的结论是,在所使用的模型中,波反射和壁面非线性都不能解释实验阻抗曲线与理论预测曲线的偏差。存在反射时的阻抗模量可用于研究模型的传输特性(波速和衰减)。

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