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首页> 外文期刊>Ultrasound in Medicine and Biology >Interaction between secondary velocities, flow pulsation and vessel morphology in the common carotid artery.
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Interaction between secondary velocities, flow pulsation and vessel morphology in the common carotid artery.

机译:颈总动脉中次要速度,血流脉动和血管形态之间的相互作用。

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The common carotid artery (CCA), one of the vessels more frequently investigated by ultrasound (US), is often modeled as a straight tube in quasi-laminar flow regimens. Experimental investigations based on a prototype multigate system show that blood velocity profiles are parabolic during diastole and early systole, and flat during the systolic peak. However, during late systole/beginning of diastole, they have an "M" shape, where the velocity near the walls is higher than in the vessel center. Moreover, the profile shape changes when the sound beam direction is moved over a given cross-section; thus, suggesting a nonaxisymmetrical velocity distribution, which contradicts the straight tube assumption. The purpose of this paper was twofold. First, the actual velocity distribution in "normal" CCAs was reconstructed. The analysis of several velocity profiles confirms that the velocity distribution is markedly asymmetrical, especially during the deceleration phase following the systolic peak. Second, a tentative explanation for such behavior is given by correlating it with the growth of secondary flows caused by the slight vessel curvature and viscous effects. This explanation is supported by the comparison between in vitro results and numerical solution of the Navier-Stokes equations in laminar pulsed-flow regimens.
机译:颈总动脉(CCA)是超声(US)检查频率更高的血管之一,在拟层流法中通常被建模为直管。基于原型多门系统的实验研究表明,在舒张期和早期收缩期血流速度曲线呈抛物线形,而在收缩期高峰期血流曲线则呈扁平状。但是,在舒张末期收缩/开始时,它们呈“ M”形,其壁附近的速度高于血管中心的速度。此外,当声束方向在给定横截面上移动时,轮廓形状会发生变化;因此,暗示了一个非轴对称的速度分布,这与直管的假设相矛盾。本文的目的是双重的。首先,重建“正常” CCA中的实际速度分布。对多个速度曲线的分析证实,速度分布明显不对称,尤其是在收缩压峰值之后的减速阶段。其次,通过将这种行为与由轻微的容器弯曲和粘性作用引起的二次流动的增长相关联,给出了这种行为的初步解释。层流脉冲流方案中体外结果与Navier-Stokes方程数值解的比较支持了这种解释。

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