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非平稳血流的多普勒超声信号频谱

Spectrum of Doppler ultrasound signals from nonstationary blood flow.

作者信息

Bastos C C, Fish P J, Vaz F

机构信息

Dept. de Electron. e Telecoms, Aveiro Univ.

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 1999;46(5):1201-17. doi: 10.1109/58.796126.

Abstract

A new formulation for the Doppler signal generation process in pulsatile flow has been developed enabling easier identification and quantification of the mechanisms involved in spectral broadening and the development of a simple estimation formula for the measured rms spectral width. The accuracy of the estimation formula was tested by comparing it with the spectral widths found by using conventional spectral estimation on simulated Doppler signals from pulsatile flow. The influence of acceleration, sample volume size, and time window duration on the Doppler spectral width was investigated for flow with blunt and parabolic velocity profiles passing through Gaussian-shaped sample volumes. Our results show that, for short duration windows, the spectral width is dominated by window broadening and that acceleration has a small effect on the spectral width. For long duration windows, the effect of acceleration must be taken into account. The size of the sample volume affects the spectral width of the Doppler signal in two ways: by intrinsic broadening and by the range of velocities passing through it. These effects act in opposite directions. The simple spectral width estimation formula was shown to have excellent agreement with widths calculated using the model and indicates the potential for correcting not only for window and nonstationarity broadening but also for intrinsic broadening.

摘要

已经开发出一种用于脉动流中多普勒信号生成过程的新公式,能够更轻松地识别和量化参与频谱展宽的机制,并开发出一个用于测量均方根频谱宽度的简单估计公式。通过将该估计公式与使用传统频谱估计方法对脉动流模拟多普勒信号得出的频谱宽度进行比较,测试了该估计公式的准确性。对于具有钝形和抛物线形速度剖面的流通过高斯形状样本体积的情况,研究了加速度、样本体积大小和时间窗持续时间对多普勒频谱宽度的影响。我们的结果表明,对于短持续时间窗,频谱宽度主要由窗展宽主导,加速度对频谱宽度影响较小。对于长持续时间窗,必须考虑加速度的影响。样本体积大小通过两种方式影响多普勒信号的频谱宽度:通过固有展宽以及通过其内部的速度范围。这些影响作用方向相反。结果表明,简单的频谱宽度估计公式与使用该模型计算出的宽度具有极佳的一致性,并且表明不仅有可能校正窗展宽和非平稳展宽,还能校正固有展宽。

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