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Axial and Radial Waveforms in Common Carotid Artery: An Advanced Method for Studying Arterial Elastic Properties in Ultrasound Imaging

机译:颈总动脉的轴向和径向波形:研究超声成像中动脉弹性特性的一种先进方法

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Our objective was to develop a method for studying the biomechanics of the common carotid artery (CCA) by evaluating both radial and less known axial distension of the arterial wall. We developed software capable of tracking the movements of different arterial wall layers from ultrasound recordings of CCA, and we then calculated several indices of arterial stiffness. The wide spectrum of arterial stiffness indices defined from one measurement is a unique feature of our method. The motion-tracking algorithm is based on 2-D cross-correlation enhanced with luminance optimizations. The repeatability and reproducibility of the motion tracking were evaluated by performing 10-s ultrasound recordings of left CCA twice to 19 healthy volunteers (11 women, 8 men, age 41.3 ± 14.3 y). The method revealed a biphasic axial movement of the CCA and demonstrated that the indices of arterial stiffness defined from radial movement of carotid artery are reproducible (Cronbach's α, 0.59-0.97) as well as the indices from axial movement are reproducible (Cronbach's α, -0.68 to 0.93). The good reproducibility of the motion tracking is evidence that this method of studying arterial elastic properties is adequate for in vivo studies.
机译:我们的目标是开发一种方法,通过评估动脉壁的径向扩张和鲜为人知的轴向扩张来研究颈总动脉(CCA)的生物力学。我们开发了能够从CCA的超声记录中追踪不同动脉壁层运动的软件,然后我们计算了一些动脉僵硬度指标。通过一次测量定义的广泛的动脉刚度指数是我们方法的独特功能。运动跟踪算法基于通过亮度优化得到增强的二维互相关。通过对19位健康志愿者(11位女性,8位男性,年龄41.3±14.3 y)进行两次左CCA超声10次超声记录来评估运动跟踪的可重复性和可重复性。该方法揭示了CCA的双相轴向运动,并证明了由颈动脉径向运动定义的动脉僵硬度指标是可重现的(Cronbach'sα,0.59-0.97),并且可再现来自轴向运动的指标(Cronbach'sα,- 0.68至0.93)。运动跟踪的良好再现性证明这种研究动脉弹性的方法足以进行体内研究。

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