Key result
The live color-encoded speckle imaging (CESI) platform facilitated real-time image guidance at ≥20 fps and successfully resolved complex in vivo flow dynamics during pilot trials.
Why the study?
Complex flow patterns are prevalent in the vasculature but difficult to image noninvasively in real time.
Can a live ultrasound color-encoded speckle imaging (CESI) platform effectively visualize complex vascular flow dynamics in real time in vivo?
Can a live ultrasound color-encoded speckle imaging (CESI) platform effectively visualize complex vascular flow dynamics in real time in vivo?
The development of a live color-encoded speckle imaging platform enables real-time, high-frame-rate visualization of complex vascular flow dynamics in vivo.
Advances real-time ultrasound flow imaging research; leaves open clinical adoption pending validation trials.
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.
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Yiu et al. (2019) studied Complex flow patterns in the vasculature. Live Ultrasound Color-Encoded Speckle Imaging (CESI) Platform was evaluated on Real-time image guidance and visualization of arterial flow dynamics in vivo. The live color-encoded speckle imaging (CESI) platform facilitated real-time image guidance at ≥20 fps and successfully resolved complex in vivo flow dynamics during pilot trials.
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