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用于分析股动脉模拟多普勒超声信号的时频分布技术比较

Comparison of time-frequency distribution techniques for analysis of simulated Doppler ultrasound signals of the femoral artery.

作者信息

Guo Z, Durand L G, Lee H C

机构信息

Laboratory of Biomedical Engineering, Clinical Research Institute of Montreal, P.Q., Canada.

出版信息

IEEE Trans Biomed Eng. 1994 Apr;41(4):332-42. doi: 10.1109/10.284961.

Abstract

The time-frequency distribution of the Doppler ultrasound blood flow signal is normally computed by using the short-time Fourier transform or autoregressive modeling. These two techniques require stationarity of the signal during a finite interval. This requirement imposes some limitations on the distribution estimate. In the present study, three new techniques for nonstationary signal analysis (the Choi-Williams distribution, a reduced interference distribution, and the Bessel distribution) were tested to determine their advantages and limitations for analysis of the Doppler blood flow signal of the femoral artery. For the purpose of comparison, a model stimulating the quadrature Doppler signal was developed, and the parameters of each technique were optimized based on the theoretical distribution. Distributions computed using these new techniques were assessed and compared with those computed using the short-time Fourier transform and autoregressive modeling. Three indexes, the correlation coefficient, the integrated squared error, and the normalized root-mean-squared error of the mean frequency waveform, were used to evaluate the performance of each technique. The results showed that the Bessel distribution performed the best, but the Choi-Williams distribution and autoregressive modeling are also techniques which can generate good time-frequency distributions of Doppler signals.

摘要

多普勒超声血流信号的时频分布通常采用短时傅里叶变换或自回归建模来计算。这两种技术要求信号在有限区间内具有平稳性。这一要求对分布估计施加了一些限制。在本研究中,测试了三种用于非平稳信号分析的新技术(蔡-威廉姆斯分布、一种减少干扰分布和贝塞尔分布),以确定它们在分析股动脉多普勒血流信号方面的优缺点。为了进行比较,开发了一个模拟正交多普勒信号的模型,并基于理论分布对每种技术的参数进行了优化。评估了使用这些新技术计算的分布,并与使用短时傅里叶变换和自回归建模计算的分布进行了比较。使用相关系数、积分平方误差和平均频率波形的归一化均方根误差这三个指标来评估每种技术的性能。结果表明,贝塞尔分布表现最佳,但蔡-威廉姆斯分布和自回归建模也是能够生成良好多普勒信号时频分布的技术。

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