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Compensation of the bias caused by the wall filter on the mean Doppler frequency

机译:壁滤波器对平均多普勒频率造成的偏差的补偿

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摘要

In the presence of noise, any wall filter induces a bias on the mean Doppler frequency estimated by the algorithm based on the calculation of the phase of the autocorrelation function at lag 1. In this paper, it is shown that the bias results from the nonzero value of the autocorrelation function of the filtered noise at lag 1. A general method for compensating the bias was then deduced. It consists of a preliminary estimation of the filtered noise contribution and its subtraction from the autocorrelation function of the Doppler signal. The method is independent of the nature of the noise and wall filter. An evaluation of this method on simulated Doppler signals and on measurements from a moving-string phantom showed that effective compensation of the bias was obtained, but at the expense of a higher variance. Taking into account both the bias and the variance, however, it was shown that this method offers an improvement over the noncompensated method. Finally, the performance of this method was demonstrated using in vivo measurements taken from a human aorta.
机译:在存在噪声的情况下,任何壁滤波器都会对算法的估计多普勒平均频率产生偏差,该偏差是基于滞后1时自相关函数的相位计算得出的。本文证明,该偏差是由非零引起的滞后1时滤波后的噪声的自相关函数的值。然后推导补偿偏差的一般方法。它包括对滤波后的噪声贡献的初步估计以及从多普勒信号的自相关函数中减去的噪声。该方法与噪声和壁滤波器的性质无关。对这种方法的仿真多普勒信号和动弦幻像的测量结果的评估表明,可以有效补偿偏差,但要以较大的方差为代价。然而,考虑到偏差和方差,表明该方法相对于非补偿方法提供了改进。最后,使用从人主动脉进行的体内测量证明了该方法的性能。

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