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Estimation of shear stress by using a myocardial bridge-mural coronary artery simulating device

机译:利用心肌桥壁冠状动脉模拟装置估算切应力

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Background: This study was aimed at developing a myocardial bridge-mural coronary artery simulative device and analyzing the relationship between shear stress on the mural coronary artery and atherosclerosis. Methods: A myocardial bridge-mural coronary artery simulative device was used to simulate experiments in vitro. In the condition of maintaining any related parameters such as system temperature, average flow rate, and heart rate, we calculated and observed changes in proximal and distal mean values, and oscillatory value of shear stress on the mural coronary artery by regulating the compression level of the myocardial bridge to the mural coronary artery. Results: Under 0% compression, no significant differences were observed in distal and proximal mean values and oscillatory value of the shear stress on the mural coronary artery. With the increase in the degree of compression, the mean shear stress at the distal end was greater than that at the proximal end, but the oscillatory value of the shear stress at the proximal end was greater than that at the distal end. Conclusions: The experimental results of this study indicate that myocardial bridge compression leads to abnormal hemodynamics at the proximal end of the mural coronary artery. This abnormal phenomenon is of great significance in the study of atherosclerosis hemodynamic pathogenesis, which has potential clinical value for pathological effects and treatments of myocardial bridge
机译:背景:这项研究旨在开发一种心肌桥壁壁冠状动脉模拟装置,并分析壁冠状动脉上的切应力与动脉粥样硬化之间的关系。方法:采用心肌桥壁冠状动脉模拟装置进行体外实验。在维持系统温度,平均流速和心率等任何相关参数的情况下,我们通过调节冠状动脉的压缩水平来计算和观察壁上冠状动脉的近端和远端平均值以及切应力的振荡值的变化。通向壁冠状动脉的心肌桥。结果:在0%的压力下,壁上冠状动脉的切变应力的远端和近端平均值和振荡值均无显着差异。随着压缩程度的增加,远端的平均切应力大于近端的平均切应力,但近端的切应力的振荡值大于远端的切应力的振荡值。结论:本研究的实验结果表明,心肌桥受压会导致壁冠状动脉近端的血流动力学异常。这种异常现象在动脉粥样硬化血流动力学发病机理的研究中具有重要意义,对于心肌桥的病理学作用和治疗具有潜在的临床价值。

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