首页> 外文期刊>American journal of applied sciences >A New System to Analyze Pulsatile Flow Characteristics in Elastic Tubes for Hemodynamic Applications | Science Publications
【24h】

A New System to Analyze Pulsatile Flow Characteristics in Elastic Tubes for Hemodynamic Applications | Science Publications

机译:用于血液动力学应用的弹性管中脉动流动特性分析的新系统科学出版物

获取原文
       

摘要

> In this research, we present a new designed experimental setup for study of characteristics of pulsatile flow in elastic tubes, aiming to simulate arterial blood flow. This system includes four major components: (1) a pulsatile pump producing original arterial flow, (2) an elastic element to simulate coupling of the heart with the arterial system, (3) an elastic tube with mechanical characteristics of the arterial wall and assembly of pressure transducers to monitor inlet and outlet pulsatile pressures and the resultant pulsatile pressure gradient and (4) a resistant element to simulate peripheral resistant distal the artery. The system is capable of performing under different mechanical conditions, including tubes with different elastic moduli and fluids with different viscosities. Experimental results showed a precise ability of producing original blood flow waves and recording pressure pulses and pressure gradient waves under different mechanical conditions. The resultant pressure pulses were compatible with the diastolic-systolic pressure pulses of typical arteries. The system showed an accurate sensitivity to variations of fluid viscosity and elasticity of tube wall. Experimental results showed that stiffening of the wall resulted in decrease of mean pressure gradient pulse. Results also showed that an elevated fluid viscosity led to a higher mean value of pressure gradient and less fluctuation of pressure gradient pulse. Results are in good agreement with theoretical considerations of higher energy dissipation and consequent pressure drop by increased fluid viscosity. The designed experimental setup might be used in evaluation of hemodynamic parameters in patho-physiological situations such as stenotic arteries and age related stiffening.
机译: >在这项研究中,我们提出了一种新的设计实验装置,用于研究弹性管中脉动流的特征,旨在模拟动脉血流。该系统包括四个主要部分:(1)产生原始动脉血流的搏动泵;(2)模拟心脏与动脉系统耦合的弹性元件;(3)具有动脉壁和组件机械特性的弹性管用于监测入口和出口脉动压力以及由此产生的脉动压力梯度的压力传感器,以及(4)阻力元件,模拟动脉远端的外周阻力。该系统能够在不同的机械条件下运行,包括具有不同弹性模量的管和具有不同粘度的流体。实验结果表明,在不同的机械条件下,它具有产生原始血流波并记录压力脉冲和压力梯度波的精确能力。产生的压力脉冲与典型动脉的舒张收缩压脉冲兼容。该系统显示出对流体粘度和管壁弹性变化的精确敏感性。实验结果表明,壁的硬化导致平均压力梯度脉冲的减小。结果还表明,较高的流体粘度导致较高的压力梯度平均值和较小的压力梯度脉冲波动。结果与较高的能量耗散以及由于流体粘度增加而导致的压降的理论考虑非常吻合。设计的实验装置可用于评估病理生理情况下的血液动力学参数,如狭窄动脉和与年龄相关的僵硬。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号