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Experimental study on the pulse wave propagation in viscoelastic vessel tubes -Effects of blood viscosity and tube stiffness

机译:粘弹管管中脉搏波传播的实验研究 - 血液粘度和管刚度的影响

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The pressure wave in arteries shows similar characteristic of pulse wave. Therefore, in order to investigate the pulse wave behavior due to properties of tube and blood, the experimental study was performed using artificial polymer tube and viscous liquid. The polyurethane tube and glycerin solution were used as simulated of blood vessels and simulant blood, respectively. In case of glycerin solution 40 wt.% which corresponds to ordinary blood viscosity, the attenuation coefficient of a pressure wave decreased from 4.3 to 1.6 dB/m due to the tube stiffness (Young's modulus: 60 - 200 kPa). When the viscosity of liquid increases from approximately 4 - 10 mPa·s (the range of human blood viscosity) in the stiff tube, the attenuation coefficient of a pressure wave changed from 1.6 to 3.2 dB/m. The hardening of the blood vessel by aging or the illness and the increase of blood viscosity possibly have opposite influence to intravascular pressure wave.
机译:动脉中的压力波显示出类似的脉搏特性。因此,为了研究由于管和血液的性质引起的脉搏波行为,使用人造聚合物管和粘性液体进行实验研究。聚氨酯管和甘油溶液分别用作血管和模拟血液的模拟。在甘油溶液40重量%的情况下,对应于普通血液粘度的%,由于管刚度(杨氏模量:60-200kPa),压力的衰减系数从4.3降至1.6dB / m。当液体的粘度从刚性管中的约4-10MPa·s(人血粘度范围)增加时,压力波的衰减系数从1.6变为3.2dB / m。血管通过老化或疾病的硬化和血液粘度的增加可能对血管内压力波有相反的影响。

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