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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Live Ultrasound Color-Encoded Speckle Imaging Platform for Real-Time Complex Flow Visualization In Vivo
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Live Ultrasound Color-Encoded Speckle Imaging Platform for Real-Time Complex Flow Visualization In Vivo

机译:实时超声彩色编码斑点成像平台,用于实时复杂流可视化体内

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Complex flow patterns are prevalent in the vasculature, but they are difficult to image noninvasively in real time. This paper presents the first real-time scanning platform for a high-frame-rate ultrasound technique called color-encoded speckle imaging (CESI) and its use in visualizing arterial flow dynamics in vivo. CESI works by simultaneously rendering flow speckles and color-coded flow velocity estimates on a time-resolved basis. Its live implementation was achieved by integrating a 192-channel programmable ultrasound front-end module, a 4.8-GB/s capacity data streaming link, and a series of computing kernels implemented on the graphical processing unit (GPU) for beamforming and Doppler processing. A slow-motion replay mode was also included to offer coherent visualization of CESI frames acquired at high frame rate [3000 frames per second (fps) in our experiments]. The live CESI scanning platform was found to be effective in facilitating real-time image guidance (at least 20 fps for live video display with 55-fps GPU processing throughout). In vivo pilot trials also showed that live CESI, when running in replay mode, can temporally resolve triphasic flow at the brachial bifurcation and can reveal flow dynamics in the brachial vein during a fist-clenching maneuver. Overall, live CESI has potential for use in routine investigations in vivo that seek to identify complex flow dynamics in real time and relate these dynamics to vascular physiology.
机译:复杂的血流模式在脉管系统中很普遍,但是很难实时进行无创成像。本文介绍了第一个用于高帧速超声技术的实时扫描平台,称为彩色编码散斑成像(CESI)及其在可视化体内动脉流动动力学中的用途。 CESI通过在时间分辨的基础上同时渲染流斑点和颜色编码的流速估计来工作。它的实时实现是通过集成192通道可编程超声前端模块,4.8 GB / s容量的数据流链路以及在图形处理单元(GPU)上实现的用于波束成形和多普勒处理的一系列计算内核来实现的。还包括慢动作回放模式,以提供以高帧速率(在我们的实验中为每秒3000帧(fps))采集的CESI帧的连贯可视化。实时CESI扫描平台被发现在促进实时图像导航方面是有效的(实时视频显示至少20 fps,并具有5​​5 fps的GPU处理能力)。体内先导试验还显示,以重播模式运行时,实时CESI可以暂时解决臂分叉处的三流血流,并可以在进行拳头操作时揭示臂静脉的血流动力学。总体而言,实时CESI具有用于体内常规研究的潜力,这些常规研究旨在实时识别复杂的血流动力学并将这些动力学与血管生理联系起来。

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