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实时二维相控阵向量血流成像。

Real-Time 2-D Phased Array Vector Flow Imaging.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2018 Jul;65(7):1205-1213. doi: 10.1109/TUFFC.2018.2838518.

Abstract

Echocardiography examination of the blood flow is currently either restricted to 1-D techniques in real-time or experimental offline 2-D methods. This paper presents an implementation of transverse oscillation for real-time 2-D vector flow imaging (VFI) on a commercial BK Ultrasound scanner. A large field-of-view (FOV) sequence for studying flow dynamics at 11 frames per second (fps) and a sequence for studying peak systolic velocities (PSVs) with a narrow FOV at 36 fps were validated. The VFI sequences were validated in a flow rig with continuous laminar parabolic flow and in a pulsating flow pump system before being tested in vivo, where measurements were obtained on two healthy volunteers. Mean PSV from 11 cycles was 155 cms with a precision of ±9.0% for the pulsating flow pump. In vivo, PSV estimated in the ascending aorta was 135 cms ± 16.9% for eight cardiac cycles. Furthermore, in vivo flow dynamics of the left ventricle and in the ascending aorta were visualized. In conclusion, angle independent 2-D VFI on a phased array has been implemented in real time, and it is capable of providing quantitative and qualitative flow evaluations of both the complex and fully transverse flow.

摘要

目前,超声心动图血流检查要么局限于实时 1-D 技术,要么是实验性的离线 2-D 方法。本文提出了一种在商业 BK 超声扫描仪上实现实时 2-D 向量血流成像 (VFI) 的横向振荡方法。我们验证了一个大视场 (FOV) 序列,用于每秒 11 帧 (fps) 研究流动动力学,以及一个用于以 36 fps 研究峰值收缩速度 (PSV) 的窄 FOV 序列。VFI 序列在连续层流抛物线流动的流动装置和脉动流泵系统中进行了验证,然后在体内进行了测试,在两名健康志愿者身上获得了测量结果。脉动流泵的 11 个心动周期的平均 PSV 为 155cm/s,精度为±9.0%。在体内,升主动脉的 PSV 估计值为 8 个心动周期的 135cm/s±16.9%。此外,还可视化了左心室和升主动脉的体内流动动力学。总之,在相控阵上实现了实时、角度独立的 2-D VFI,能够对复杂和完全横向流动进行定量和定性的流动评估。

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