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Experimental study on the pressure and pulse wave propagation in viscoelastic vessel tubes-effects of liquid viscosity and tube stiffness

机译:压力和脉搏波在粘弹性容器管中传播的实验研究-液体粘度和管刚度的影响

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A pulse wave is the displacement wave which arises because of ejection of blood from the heart and reflection at vascular bed and distal point. The investigation of pressure waves leads to understanding the propagation characteristics of a pulse wave. To investigate the pulse wave behavior, an experimental study was performed using an artificial polymer tube and viscous liquid. A polyurethane tube and glycerin solution were used to simulate a blood vessel and blood, respectively. In the case of the 40 wt% glycerin solution, which corresponds to the viscosity of ordinary blood, the attenuation coefficient of a pressure wave in the tube decreased from 4.3 to 1.6 dB/m because of the tube stiffness (Young¿s modulus: 60 to 200 kPa). When the viscosity of liquid increased from approximately 4 to 10 mPa·s (the range of human blood viscosity) in the stiff tube, the attenuation coefficient of the pressure wave changed from 1.6 to 3.2 dB/m. The hardening of the blood vessel caused by aging and the increase of blood viscosity caused by illness possibly have opposite effects on the intravascular pressure wave. The effect of the viscosity of a liquid on the amplitude of a pressure wave was then considered using a phantom simulating human blood vessels. As a result, in the typical range of blood viscosity, the amplitude ratio of the waves obtained by the experiments with water and glycerin solution became 1:0.83. In comparison with clinical data, this value is much smaller than that seen from blood vessel hardening. Thus, it can be concluded that the blood viscosity seldom affects the attenuation of a pulse wave.
机译:脉搏波是位移波,它是由于心脏中的血液喷射以及在血管床和远端的反射而产生的。对压力波的研究有助于理解脉搏波的传播特性。为了研究脉搏波的行为,使用人造聚合物管和粘性液体进行了实验研究。聚氨酯管和甘油溶液分别用于模拟血管和血液。在40%的甘油溶液(相当于普通血液的粘度)的情况下,由于管子的刚度,管子内压力波的衰减系数从4.3降至1.6 dB / m(杨氏模量:60至200 kPa)。当在硬管中液体的粘度从大约4 mPa·s增加到10 mPa·s(人类血液粘度的范围)时,压力波的衰减系数从1.6 dB / m变为3.2 dB / m。由衰老引起的血管硬化和由疾病引起的血液粘度增加可能对血管内压力波产生相反的影响。然后使用模拟人体血管的体模考虑液体粘度对压力波幅度的影响。结果,在血液粘度的典型范围内,用水和甘油溶液通过实验获得的波的振幅比变为1:0.83。与临床数据相比,该值远小于从血管硬化中看到的值。因此,可以得出结论,血液粘度很少影响脉搏波的衰减。

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