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通过三维超声矢量血流成像测量颈总动脉血流并经磁共振成像验证

Common Carotid Artery Flow Measured by 3-D Ultrasonic Vector Flow Imaging and Validated with Magnetic Resonance Imaging.

作者信息

Holbek Simon, Hansen Kristoffer Lindskov, Bouzari Hamed, Ewertsen Caroline, Stuart Matthias Bo, Thomsen Carsten, Nielsen Michael Bachmann, Jensen Jørgen Arendt

机构信息

Center for Fast Ultrasound Imaging, Department of Electrical Engineering, Technical University of Denmark, Lyngby, Denmark.

Department of Radiology, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.

出版信息

Ultrasound Med Biol. 2017 Oct;43(10):2213-2220. doi: 10.1016/j.ultrasmedbio.2017.06.007. Epub 2017 Jul 12.

Abstract

Ultrasound (US) examination of the common carotid artery was compared with a through-plane magnetic resonance imaging (MRI) sequence to validate a recently proposed technique for 3-D US vector flow imaging. Data from the first volunteer examined were used as the training set, before volume flow and peak velocities were calculated for the remaining eight volunteers. Peak systolic velocities (PSVs) and volume flow obtained with 3-D US were, on average, 34% higher and 24% lower than those obtained with MRI, respectively. A high correlation was observed for PSV (r = 0.79), whereas a lower correlation was observed for volume flow (r = 0.43). The overall standard deviations were ±5.7% and ±5.7% for volume flow and PSV with 3-D US, compared with ±2.7% and ±3.2% for MRI. Finally, the data were re-processed with a change in the parameter settings for the echo-canceling filter to investigate its influence on overall performance. PSV was less affected by the re-processing, whereas the difference in volume flow between 3-D vector flow imaging and MRI was reduced to -9%, and with an improved overall standard deviation of ±4.7%. The results illustrate the feasibility of using 3-D US for precise and angle-independent volume flow and PSV estimation in vivo.

摘要

将颈总动脉的超声(US)检查与一种平面磁共振成像(MRI)序列进行比较,以验证最近提出的一种用于三维超声矢量血流成像的技术。在为其余八名志愿者计算体积流量和峰值速度之前,将第一名接受检查的志愿者的数据用作训练集。三维超声获得的收缩期峰值速度(PSV)和体积流量平均分别比MRI获得的高34%和低24%。观察到PSV具有高度相关性(r = 0.79),而体积流量的相关性较低(r = 0.43)。三维超声的体积流量和PSV的总体标准差分别为±5.7%和±5.7%,而MRI的分别为±2.7%和±3.2%。最后,通过改变回声消除滤波器的参数设置对数据进行重新处理,以研究其对整体性能的影响。重新处理对PSV的影响较小,而三维矢量血流成像与MRI之间的体积流量差异降至-9%,且总体标准差提高到±4.7%。结果表明,在体内使用三维超声进行精确且与角度无关的体积流量和PSV估计是可行的。

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