...
首页> 外文期刊>Computer Modeling in Engineering & Sciences >The Analysis of Wall Shear Stress Modulated by Acute Exercise in the Human Common Carotid Artery with an Elastic Tube Model
【24h】

The Analysis of Wall Shear Stress Modulated by Acute Exercise in the Human Common Carotid Artery with an Elastic Tube Model

机译:用弹性管模型分析急性运动中急性运动调节急性运动的剖面抗剪切应力

获取原文
获取原文并翻译 | 示例
           

摘要

Assessment of the magnitude and pattern of wall shear stress (WSS) in vivo is the prerequisite for studying the quantitative relationship between exercise-induced WSS and arterial endothelial function. In the previous studies, the calculation of the WSS modulated by exercise training was primarily based upon the rigid tube model, which did not take non-linear effects of vessel elastic deformation into consideration. In this study, with an elastic tube model, we estimated the effect of a bout of 30-minute acute cycling exercise on the WSS and the flow rate in the common carotid artery according to the measured inner diameter, center-line blood flow velocity, heart rates and the brachial blood pressures before and after exercise training. Furthermore, the roles of exercise induced arterial diameter and blood flow rate in the change of WSS were also determined. The numerical results demonstrate that acute exercise significantly increases the magnitudes of blood flow rate and WSS. Moreover, the vessel elastic deformation is a non-negligible factor in the calculation of the WSS induced by exercise, which generates greater effects on the minimum WSS than the maximum WSS. Additionally, the contributions of exercise-induced variations in blood flow rate and diameter are almost identical in the change of the mean WSS.
机译:体内壁剪应力(WSS)的幅度和模式的评估是研究运动诱导的WSS和动脉内皮功能之间的定量关系的先决条件。在以前的研究中,通过运动训练调制的WSS的计算主要基于刚性管模型,这对血管弹性变形的非线性效应考虑起来。在本研究中,通过弹性管模型,我们估计了根据测量的内径,中心线血流速度,在运动训练前后的心率和肱血压。此外,还确定了运动诱导的动脉直径和血流率在WSS变化中的作用。数值结果表明,急性运动显着增加了血流率和WSS的大小。此外,血管弹性变形是计算锻炼诱导的WSS的不可忽略的因素,这对最小WSS产生了更大的影响。另外,在平均WSS的变化中,运动诱导的血流率和直径变化的贡献几乎相同。

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