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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Short-lag spatial coherence imaging on matrix arrays, Part II: Phantom and in vivo experiments
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Short-lag spatial coherence imaging on matrix arrays, Part II: Phantom and in vivo experiments

机译:矩阵阵列上的短时空相干成像,第二部分:幻影和体内实验

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摘要

In Part I of the paper, we demonstrated through simulation the potential of volumetric short-lag spatial coherence (SLSC) imaging to improve visualization of hypoechoic targets in three dimensions. Here, we demonstrate the application of volumetric SLSC imaging in phantom and in vivo experiments using a clinical 3-D ultrasound scanner and matrix array. Using a custom single-channel acquisition tool, we collected partially beamformed channel data from the fully sampled matrix array at high speeds and created matched Bmode and SLSC volumes of a vessel phantom and in vivo liver vasculature. 2-D and 3-D images rendered from the SLSC volumes display reduced clutter and improved visibility of the vessels when compared with their B-mode counterparts. We use concurrently acquired color Doppler volumes to confirm the presence of the vessels of interest and to define the regions inside the vessels used in contrast and contrast-to-noise ratio (CNR) calculations. SLSC volumes show higher CNR values than their matched B-mode volumes, while the contrast values appear to be similar between the two imaging methods.
机译:在本文的第一部分中,我们通过仿真演示了体积短时滞空间相干(SLSC)成像在改善三维低回声目标可视化方面的潜力。在这里,我们演示了体积SLSC成像在使用临床3-D超声扫描仪和矩阵阵列的体模和体内实验中的应用。使用定制的单通道采集工具,我们从完整采样的矩阵阵列中高速收集了部分波束形成的通道数据,并创建了匹配的Bmode和SLSC体积的体模和体内肝脏脉管系统。与B模式对应物相比,从SLSC体积渲染的2D和3D图像显示出减少的混乱并提高了船只的可见度。我们使用并发采集的彩色多普勒容积来确认感兴趣的血管的存在,并定义用于对比和对比度噪声比(CNR)计算的血管内部区域。 SLSC体积显示出比其匹配的B模式体积更高的CNR值,而两种成像方法之间的对比度值似乎相似。

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