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In vivo out-of-plane Doppler imaging based on ultrafast plane wave imaging

机译:基于超快平面波成像的体内平面外多普勒成像

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Retrieving the blood flow velocity vector on 2D acquisitions transverse to the vessel could improve the quantification of flow rate in large vessels. The in plane component is easily computed using the Doppler frequency shift. The main problem is to retrieve the angle between the probe imaging plane and the vessel axis to compute the out of plane component. Here, we study the case where the speed vector can be decomposed on two directions: the out of plane direction and the depth direction. We explore the combination of a technique called spectral broadening with ultrafast plane wave imaging. Due to its high spatio temporal sampling, ultrafast plane wave imaging permits to quantify the Doppler spectrum of flows in each pixel. Moreover, ultrafast plane wave imaging permits a fast calibration method of Doppler spectra spectral broadening avoiding approximations of a complex theoretical analysis. An experimental demonstration of the method is performed in vivo on healthy human carotid artery.
机译:在垂直于血管的2D采集中检索血流速度矢量可以改善大型血管中流速的量化。使用多普勒频移可以很容易地计算出平面内分量。主要问题是获取探头成像平面和血管轴之间的角度以计算平面外分量。在这里,我们研究了速度矢量可以在两个方向上分解的情况:平面外方向和深度方向。我们探索了一种称为光谱展宽的技术与超快平面波成像的结合。由于其高时空时间采样,超快速平面波成像可以量化每个像素中的多普勒频谱。此外,超快平面波成像允许多普勒光谱光谱加宽的快速校准方法,避免了复杂理论分析的近似。该方法的实验证明是在体内对健康的人颈动脉进行的。

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