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A robust Doppler spectral envelope detection technique for automated blood flow measurements

机译:强大的多普勒频谱包络检测技术可自动测量血流

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Maximum velocity estimation in a Doppler Spectrogram is of clinical interest. Two existing approaches to maximum velocity estimation, the Geometric method (GM) and the Signal Noise Slope Intersection (SNSI) method are combined in the new approach described in this paper. Further, a data adaptive validity check is introduced that makes the proposed technique independent of user defined parameters. The method enables accurate maximum velocity point detection and obtains an automated, robust tracing of the maximum velocity envelope, which can be further used for automated blood flow measurements. In order to verify the robustness of the algorithm, Pulsatility Index measurements were compared with the observations made by a midwife trained in ultrasound. Evaluation of the steadiness of the location of identified maximum frequency point in simulated flow with varying SNR, ranging to a minimum SNR level of 6dB, also aided the verification. This technique is expected to prove useful in ultrasound machines for diagnoses by clinically inexperienced users.
机译:多普勒频谱图中的最大速度估计具有临床意义。本文介绍的新方法将现有的两种最大速度估计方法,几何方法(GM)和信号噪声斜率交点(SNSI)方法结合在一起。此外,引入了数据自适应有效性检查,该检查使所提出的技术独立于用户定义的参数。该方法能够进行准确的最大速度点检测,并获得最大速度包络线的自动鲁棒跟踪,该跟踪可进一步用于自动血流测量。为了验证该算法的鲁棒性,将搏动指数测量值与接受过超声波培训的助产士的观察结果进行了比较。评估变化的SNR(范围为6dB的最小SNR)时,在模拟流中识别出的最大频率点的位置的稳定性也有助于验证。预期该技术将被证明在超声机中对临床经验不足的用户进行诊断很有用。

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