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Error analysis of ultrasonic tissue doppler velocity estimation techniques for quantification of velocity and strain.

机译:用于量化速度和应变的超声组织多普勒速度估计技术的误差分析。

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摘要

Recent work in the field of Doppler tissue imaging has focused mainly on the quantification of results involving the use of techniques of strain and strain-rate imaging. These results are based on measuring a velocity gradient between two points, a known distance apart, in the region-of-interest. Although many recent publications have demonstrated the potential of this technique in clinical terms, the method still suffers from low repeatability. The work presented here demonstrates, through the use of a rotating phantom arrangement and a custom developed single element ultrasound system, that this is a consequence of the fundamental accuracy of the technique used to estimate the original velocities. Results are presented comparing the performance of the conventional Kasai autocorrelation velocity estimator with those obtained using time domain cross-correlation and the complex cross-correlation model based estimator. The results demonstrate that the complex cross-correlation model based technique is able to offer lower standard deviations of the velocity gradient estimations compared with the Kasai algorithm.
机译:多普勒组织成像领域的最新工作主要集中在涉及使用应变和应变率成像技术的结果的量化上。这些结果基于测量感兴趣区域中两点之间的速度梯度(相距已知距离)。尽管最近的许多出版物已经从临床角度证明了该技术的潜力,但是该方法仍具有重复性低的缺点。通过使用旋转体模装置和定制开发的单元素超声系统,此处介绍的工作表明这是用于估算原始速度的技术的基本准确性的结果。给出了将常规Kasai自相关速度估计器与使用时域互相关和基于复杂互相关模型的估计器获得的性能进行比较的结果。结果表明,与Kasai算法相比,基于复杂互相关模型的技术能够提供较低的速度梯度估计标准偏差。

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