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Performance assessment of Pulse Wave Imaging using conventional ultrasound in canine aortas ex vivo and normal human arteries in vivo

机译:使用常规超声在离体犬主动脉和体内正常人动脉中进行脉搏波成像的性能评估

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摘要

The propagation behavior of the arterial pulse wave may provide valuable diagnostic information for cardiovascular pathology. Pulse Wave Imaging (PWI) is a noninvasive, ultrasound imaging-based technique capable of mapping multiple wall motion waveforms along a short arterial segment over a single cardiac cycle, allowing for the regional pulse wave velocity (PWV) and propagation uniformity to be evaluated. The purpose of this study was to improve the clinical utility of PWI using a conventional ultrasound system. The tradeoff between PWI spatial and temporal resolution was evaluated using an ex vivo canine aorta (n = 2) setup to assess the effects of varying image acquisition and signal processing parameters on the measurement of the PWV and the pulse wave propagation uniformity r2. PWI was also performed on the carotid arteries and abdominal aortas of 10 healthy volunteers (24.8 ± 3.3 y.o.) to determine the waveform tracking feature that would yield the most precise PWV measurements and highest r2 values in vivo. The ex vivo results indicated that the highest precision for measuring PWVs ~ 2.5 – 3.5 m/s was achieved using 24–48 scan lines within a 38 mm image plane width (i.e. 0.63 – 1.26 lines/mm). The in vivo results indicated that tracking the 50% upstroke of the waveform would consistently yield the most precise PWV measurements and minimize the error in the propagation uniformity measurement. Such findings may help establish the optimal image acquisition and signal processing parameters that may improve the reliability of PWI as a clinical measurement tool.
机译:动脉脉搏波的传播行为可能为心血管病理学提供有价值的诊断信息。脉搏波成像(PWI)是一种基于超声的非侵入性技术,能够在单个心动周期内沿着短动脉段绘制多个壁运动波形,从而可以评估区域脉搏波速度(PWV)和传播均匀性。这项研究的目的是使用常规超声系统提高PWI的临床效用。使用离体犬主动脉(n = 2)设置评估PWI空间和时间分辨率之间的权衡,以评估变化的图像采集和信号处理参数对PWV和脉搏波传播均匀性r 的测量的影响2 。还对10位健康志愿者(24.8±3.3 y.o.)的颈动脉和腹主动脉进行了PWI,以确定其波形追踪功能,该功能将在体内产生最精确的PWV测量值和最高的r 2 值。离体结果表明,使用38-mm图像平面宽度(即0.63-1.26线/ mm)内的24-48条扫描线,可以测量到2.5-3.5 m / s的PWV的最高精度。体内结果表明,跟踪波形的50%上冲将始终产生最精确的PWV测量值,并使传播均匀性测量值的误差最小。这些发现可以帮助建立最佳的图像采集和信号处理参数,从而可以提高PWI作为临床测量工具的可靠性。

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