Stojadinović Bojana, Tenne Tamar, Zikich Dragoslav, Rajković Nemanja, Milošević Nebojša, Lazović Biljana, Žikić Dejan
Biophysics Institute, School of Medicine, Belgrade University, 11000 Belgrade, Serbia.
Raphael Recanati Genetic Institute, Beilinson Hospital, Petah Tikva, Israel.
J Biomech. 2015 Nov 26;48(15):3969-3974. doi: 10.1016/j.jbiomech.2015.09.016. Epub 2015 Oct 3.
The velocity by which the disturbance travels through the medium is the wave velocity. Pulse wave velocity is one of the main parameters in hemodynamics. The study of wave propagation through the fluid-fill elastic tube is of great importance for the proper biophysical understanding of the nature of blood flow through of cardiovascular system. The effect of viscosity on the pulse wave velocity is generally ignored. In this paper we present the results of experimental measurements of pulse wave velocity (PWV) of compression and expansion waves in elastic tube. The solutions with different density and viscosity were used in the experiment. Biophysical model of the circulatory flow is designed to perform measurements. Experimental results show that the PWV of the expansion waves is higher than the compression waves during the same experimental conditions. It was found that the change in viscosity causes a change of PWV for both waves. We found a relationship between PWV, fluid density and viscosity.
扰动在介质中传播的速度就是波速。脉搏波速度是血液动力学的主要参数之一。研究波在充满流体的弹性管中的传播对于从生物物理学角度正确理解心血管系统中的血流性质非常重要。通常忽略粘性对脉搏波速度的影响。在本文中,我们展示了弹性管中压缩波和膨胀波的脉搏波速度(PWV)的实验测量结果。实验中使用了不同密度和粘性的溶液。设计了循环流动的生物物理模型来进行测量。实验结果表明,在相同实验条件下,膨胀波的PWV高于压缩波。研究发现,粘性的变化会导致两种波的PWV都发生变化。我们发现了PWV、流体密度和粘性之间的关系。