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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >3-D ultrafast doppler imaging applied to the noninvasive mapping of blood vessels in Vivo
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3-D ultrafast doppler imaging applied to the noninvasive mapping of blood vessels in Vivo

机译:3-D超快多普勒成像技术应用于体内血管的无创成像

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Ultrafast Doppler imaging was introduced as a technique to quantify blood flow in an entire 2-D field of view, expanding the field of application of ultrasound imaging to the highly sensitive anatomical and functional mapping of blood vessels. We have recently developed 3-D ultrafast ultrasound imaging, a technique that can produce thousands of ultrasound volumes per second, based on a 3-D plane and diverging wave emissions, and demonstrated its clinical feasibility in human subjects in vivo. In this study, we show that noninvasive 3-D ultrafast power Doppler, pulsed Doppler, and color Doppler imaging can be used to perform imaging of blood vessels in humans when using coherent compounding of 3-D tilted plane waves. A customized, programmable, 1024-channel ultrasound system was designed to perform 3-D ultrafast imaging. Using a 32 ?? 32, 3-MHz matrix phased array (Vermon, Tours, France), volumes were beamformed by coherently compounding successive tilted plane wave emissions. Doppler processing was then applied in a voxel-wise fashion. The proof of principle of 3-D ultrafast power Doppler imaging was first performed by imaging Tygon tubes of various diameters, and in vivo feasibility was demonstrated by imaging small vessels in the human thyroid. Simultaneous 3-D color and pulsed Doppler imaging using compounded emissions were also applied in the carotid artery and the jugular vein in one healthy volunteer.
机译:引入超快多普勒成像技术是一种量化整个2D视场中的血流的技术,将超声成像的应用领域扩展到了高度敏感的血管解剖结构和功能图。我们最近开发了3-D超快速超声成像技术,该技术可基于3-D平面和发散的波发射,每秒产生数千个超声体积,并证明了其在体内人类受试者中的临床可行性。在这项研究中,我们显示了当使用3-D倾斜平面波的相干复合时,无创3-D超快功率多普勒,脉冲多普勒和彩色多普勒成像可用于执行人体血管成像。设计了定制的可编程1024通道超声系统以执行3-D超快成像。使用32 ??通过相干地合成连续的倾斜平面波发射,对32个3MHz矩阵相控阵(Vermon,Tours,法国)进行波束成形。然后以体素方式应用多普勒处理。首先通过对各种直径的Tygon管进行成像来进行3-D超快功率多普勒成像的原理证明,并通过对人甲状腺中的小血管进行成像来证明体内可行性。在一名健康志愿者中,还对颈动脉和颈静脉应用了采用复合发射的同时3D彩色和脉冲多普勒成像。

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