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Measurements of Regional Propagation Velocities of Forward and Reflected Pulse Waves by High Frame Rate Ultrasonic Imaging

机译:高帧速率超声成像对向前和反射脉冲波的区域传播速度的测量

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Pulse wave velocity (PWV) is widely used to evaluate artery-wall elasticity. In the traditional PWV method, the average PWV is calculated between 2 points, the carotid and femoral arteries, at an interval of several tens of centimeters. However, it is preferable to measure PWV in a more local region because PWVs of carotid and femoral arteries are different and atherosclerosis often forms regional lesions. To estimate regional PWV, in the present study, minute vibration velocities of the carotid arterial wall were measured at intervals of 0.2 mm at M = 72 points assigned along the arterial longitudinal direction using the phased-tracking method at a high temporal resolution of 3472 Hz. In the estimation of PWV, acceleration waveforms were obtained by applying time differentiation to measured velocities to enhance high frequency components because the use of high frequency components will improve the temporal resolution in estimation of time delays among the vibration waveforms occurred by pulse wave propagation. Time delays were estimated using analytic signals of acceleration waveforms obtained by Hilbert transform. PWV was estimated from the slope and intercept of the relationship between the phase angle of the complex correlation function of analytic signals and lag. Carotid arteries of three healthy subjects were measured in vivo. PWVs in short longitudinal segments of 14.4 mm were estimated to be 5.6, 6.4, and 6.7 m/s for the pulse wave component propagating from the heart to the periphery. Estimated PVWs were in good agreement with those reported in literature. Furthermore, in one of the subjects, there was a component reflected by the peripheral arteries. Propagation speed of the reflection component could be also separately estimated to be -8.4 m/s. The higher PWV of the reflection component was considered to be the difference in blood pressure at the arrival times of the forward and reflection components. The proposed method for measurement of regional PWV would be useful for more sensitive evaluation of the change in elasticity due to progress of atherosclerosis.
机译:脉搏波速度(PWV)广泛用于评估动脉壁弹性。在传统的PWV方法中,平均PWV在2点,颈动脉和股动脉之间计算,间隔几十厘米。然而,优选测量更多局部区域的PWV,因为颈动脉和股动脉的PWV不同,动脉粥样硬化通常会形成区域病变。为了估计区域PWV,在本研究中,颈动脉壁的微小振动速度以沿着动脉纵向的M = 72点的间隔测量,使用相控跟踪方法,以3472 Hz的高时间分辨率为0.2mm。 。在PWV的估计中,通过将时间分化施加到测量速度来获得加速波形,因为使用高频分量的使用将提高脉冲波传播发生的振动波形中的振动波形中的时间延迟时的时间分辨率。使用Hilbert变换获得的加速波形的分析信号估计时间延迟。从分析信号和滞后的复杂相关函数的相位角之间的相角之间的斜率和截距估计了PWV。体内测量了三个健康受试者的颈动脉。对于从心脏到周边的脉冲波分量,估计14.4毫米短纵向段的PWVs为5.6,6.4和6.7m / s。估计的PVW与文学报告的人吻合良好。此外,在其中一个受试者中,存在周围动脉反射的组分。反射组分的传播速度也可以单独估计为-8.4 m / s。反射组分的较高PWV被认为是前向和反射组分到达时血压差异。所提出的用于测量区域PWV的方法对于由于动脉粥样硬化的进展而对弹性变化的更敏感评估是有用的。

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