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Performance of the Transverse Oscillation method using beamformed data from a commercial scanner

机译:使用来自商业扫描仪的波束形成数据的横向振荡方法的性能

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摘要

Blood velocity estimates using conventional color flow imaging (CFI) or Doppler techniques are angle dependent. One of the proposed techniques to overcome this limitation is the Transverse Oscillation (TO) method, which also estimates the lateral velocity components. The performance of this is evaluated on a commercial platform. Beamformed data are acquired using a commercial BK Medical scanner as opposed to the previously reported results obtained with the experimental scanner RASMUS. The implementation is evaluated using an in-house circulating flow rig by calculating the relative mean standard deviation and bias of the velocity components. The relative mean standard deviation decreases as the number of shots per estimate increases and a value of 5% is obtained for 64 shots per estimate. For a center frequency of 5 MHz at 60°, 75°, and 90°, the relative mean bias varies from 21% to 27% and is lowest at a transmit focal depth close to the center of the vessel. The present performance is comparable with the results from the experimental scanner and simulations. It is obtained with only few changes to the conventional CFI setup and further optimization can improve the performance. This illustrates the feasibility of implementing the TO method on a commercial platform for real-time estimation.
机译:使用常规彩色流成像(CFI)或多普勒技术的血流速度估计值与角度有关。克服这一局限性的一种建议技术是横向振荡(TO)方法,该方法还可以估算横向速度分量。在商业平台上评估其性能。与商用扫描仪RASMUS先前报告的结果相反,使用商用BK Medical扫描仪可获取波束形成的数据。使用内部循环流动装置通过计算相对平均标准偏差和速度分量的偏差来评估实施情况。相对平均标准偏差随着每个估计的镜头数量增加而减小,并且对于每个估计的64个镜头获得5%的值。对于在60°,75°和90°的5 MHz中心频率,相对平均偏差从21%到27%变化,并且在靠近血管中心的发射焦点深度处最低。目前的性能可与实验扫描仪和仿真结果相媲美。只需对常规CFI设置进行少量更改即可获得它,并且进一步的优化可以提高性能。这说明了在商用平台上实施TO方法进行实时估算的可行性。

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