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Biophysical modeling of wave propagation phenomena: experimental determination of pulse wave velocity in viscous fluid-filled elastic tubes in a gravitation field

机译:波传播现象的生物物理学建模:在粘性场中粘性流体填充弹性管中脉搏波速度的实验测定

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摘要

Biophysical understanding of arterial hemodynamics plays an important role in proper medical diagnosis and investigation of cardiovascular disease pathogens. One of the major cardiovascular parameters is pulse wave velocity (PWV), which depends on the mechanical properties of the arterial wall. The PWV contains information on the condition of the cardiovascular system as well as its physiological age. In humans and most animals, blood flow through the blood vessels is affected by several internal and external forces. The most influencing external force on blood flow is gravity. In the upright position of the body, blood moves from heart to head, opposite to gravity, and from the heart to the legs, in direction of the gravitational force. To investigate how gravity affects PWV, we have developed a biophysical model of cardiovascular system that simulates blood flow in the upright position of the body. The paper presents the results of measurement of PWV in an elastic tube filled with fluids of different viscosities in the gravitational field.
机译:对动脉血流动力学的生物物理理解在适当的医学诊断和对心血管疾病病原体的调查中起着重要作用。主要心血管参数之一是脉搏波速度(PWV),这取决于动脉壁的机械性能。 PWV含有有关心血管系统状况以及其生理年龄的信息。在人类和大多数动物中,通过血管的血液流动受几种内部和外力的影响。对血液流动的最大影响是重力。在身体的直立位置,血液从心脏与重力相反,从心脏到腿部,在重力方向上。为了调查重力影响PWV,我们开发了一种心血管系统的生物物理模型,用于模拟身体直立位置的血流。本文介绍了在引力场中填充有不同粘度的流体的弹性管中PWV的测量结果。

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