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The Importance of Velocity Acceleration to Flow-Mediated Dilation

机译:速度加速度对流介导的膨胀的重要性

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The validity of the flow-mediated dilation test has been questioned due to the lack of normalization to the primary stimulus, shear stress. Shear stress can be calculated using Poiseuille's law. However, little attention has been given to the most appropriate blood velocity parameter(s) for calculating shear stress. The pulsatile nature of blood flow exposes the endothelial cells to two distinct shear stimuli during the cardiac cycle: a large rate of change in shear at the onset of flow (velocity acceleration), followed by a steady component. The parameter typically entered into the Poiseuille's law equation to determine shear stress is time-averaged blood velocity, with no regard for flow pulsatility. This paper will discuss (1) the limitations of using Posieuille's law to estimate shear stress and (2) the importance of the velocity profile—with emphasis on velocity acceleration—to endothelial function and vascular tone.
机译:由于缺乏对主要刺激,剪切应力的归一化,流动介导的扩张试验的有效性受到质疑。剪切应力可以使用泊肃叶定律进行计算。然而,很少有人关注用于计算剪切应力的最合适的血流速度参数。血流的脉动性质在心动周期期间将内皮细胞暴露于两种不同的剪切刺激:在流动开始时剪切的较大变化率(速度加速度),然后是稳定的分量。通常将参数输入Poiseuille定律来确定剪切应力是时间平均血流速度,而不考虑流动脉动性。本文将讨论(1)使用Posieuille定律估计剪切应力的局限性,以及(2)速度曲线(着重于速度加速度)对内皮功能和血管张力的重要性。

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