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Simultaneous quantification of flow and tissue velocities based on multi-angle plane wave imaging

机译:基于多角度平面波成像的血流和组织速度的同时定量

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摘要

A quantitative angle-independent 2-D modality for flow and tissue imaging based on multi-angle plane wave acquisition was evaluated. Simulations of realistic flow in a carotid artery bifurcation were used to assess the accuracy of the vector Doppler (VD) technique. Reduction in root mean square deviation from 27 cm/s to 6 cm/s and 7 cm/s to 2 cm/s was found for the lateral (vx) and axial (vz) velocity components, respectively, when the ensemble size was increased from 8 to 50. Simulations of a Couette flow phantom (vmax = 2.7 cm/s) gave promising results for imaging of slowly moving tissue, with root mean square deviation of 4.4 mm/s and 1.6 mm/s for the x- and z-components, respectively. A packet acquisition scheme providing both B-mode and vector Doppler RF data was implemented on a research scanner, and beamforming and further post-processing was done offline. In vivo results of healthy volunteers were in accordance with simulations and gave promising results for flow and tissue vector velocity imaging. The technique was also tested in patients with carotid artery disease. Using the high ensemble vector Doppler technique, blood flow through stenoses and secondary flow patterns were better visualized than in ordinary color Doppler. Additionally, the full velocity spectrum could be obtained retrospectively for arbitrary points in the image.
机译:基于多角度平面波采集的流量和组织成像的定量角度独立的二维模式进行了评估。模拟在颈动脉分叉中的实际流动,以评估矢量多普勒(VD)技术的准确性。发现侧面(v x )和轴向(v z)的均方根偏差从27 cm / s减小到6 cm / s,从7 cm / s减小到2 cm / s整体大小从8增加到50时的)速度分量。Couette流体模(v max = 2.7 cm / s)的模拟为缓慢成像提供了有希望的结果运动组织,x分量和z分量的均方根偏差分别为4.4 mm / s和1.6 mm / s。在研究扫描仪上实现了同时提供B模式和矢量多普勒RF数据的数据包采集方案,并且离线进行波束成形和进一步的后处理。健康志愿者的体内结果与模拟一致,并为血流和组织载体速度成像提供了有希望的结果。该技术还在颈动脉疾病患者中进行了测试。使用高集成矢量多普勒技术,与普通彩色多普勒相比,通过狭窄和二次流动模式的血流更清晰可见。另外,可以回顾性地获得图像中任意点的全速谱。

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