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In vitro in vivo 4D ultrafast Doppler imaging using a large aperture row column adressed transducer

机译:使用大口径行列地址换能器的体外和体内4D超快多普勒成像

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Ultrafast 3D Doppler imaging can provide volumetric high frame rate and high resolution mapping of the vascular anatomy and function [1]. Current approach relies on the use of matrix arrays connected to high count of electronics channel which remain complex and costly. Row Column Addressed (RCA) approaches have been proposed as a low complexity alternative to matrix probe for imaging of blood flows [2]. Orthogonal Plane Wave (OPW) compounding is a dedicated beamforming strategy introduced recently [3] to perform full 3D ultrafast volumetric imaging using RCA. In this work we apply this technique on a new large aperture RCA probe and validate experimentally 3D blood flow imaging on in vitro flow phantoms and on in vivo human carotid artery.
机译:超快3D多普勒成像可以提供高体积的帧率以及高分辨率的血管解剖结构和功能图[1]。当前的方法依赖于连接到大量电子通道的矩阵阵列的使用,这些矩阵保持复杂且昂贵。已提出行列寻址(RCA)方法,作为矩阵探针的低复杂度替代方案,用于血流成像[2]。正交平面波(OPW)复合是最近引入的专用波束成形策略[3],用于使用RCA执行完整的3D超快速体积成像。在这项工作中,我们将此技术应用于新的大口径RCA探针,并在体外流动体模和体内人颈动脉上通过实验验证了3D血流成像。

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