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首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Time-frequency analysis of heart murmurs. Part II: Optimisation of time-frequency representations and performance evaluation.
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Time-frequency analysis of heart murmurs. Part II: Optimisation of time-frequency representations and performance evaluation.

机译:心脏杂音的时频分析。第二部分:时频表示的优化和性能评估。

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摘要

The basic parameters of the spectrogram, the Choi-Williams, and the Bessel distributions are adjusted to provide the best time-frequency representations (TFRs) of the simulated murmur signals of mitral stenosis, mitral regurgitation, aortic stenosis, aortic regurgitation, and of two musical murmurs. The initial adjustment of the parameters of each TFR technique is performed by computing and minimising the relative averaged absolute error between the frequency contours at -3 dB and -10 dB of each TFR of the simulated murmurs and those of the theoretical distribution of the same signals. The results show that the spectrogram generally provides very good to excellent performance in representing the TFRs of stenotic and regurgitant murmurs. Improvements provided by the Choi-Williams and the Bessel distributions are minor but not systematic for the two signal-to-noise ratios tested (0 and 30 dB) and for the two frequency contours estimated. The Bessel and the Choi-Williams distributions provide the best performance for the musical murmurs. The study shows that although a single technique cannot be optimal for all six murmurs, the spectrogram using a Hamming window of 30 ms is an acceptable compromise to detect the six simulated heart murmurs.
机译:调整了频谱图,Choi-Williams和Bessel分布的基本参数,以提供模拟的二尖瓣狭窄,二尖瓣反流,主动脉瓣狭窄,主动脉瓣反流的杂音信号的最佳时频表示(TFR)。音乐杂音。通过计算并最小化模拟杂音的每个TFR的-3 dB和-10 dB的频率轮廓与相同信号的理论分布之间的相对平均绝对误差,可以对每种TFR技术的参数进行初始调整。 。结果表明,频谱图通常可以很好地表示狭窄和反流杂音的TFR。 Choi-Williams和Bessel分布所提供的改进很小,但对于所测试的两个信噪比(0和30 dB)以及所估算的两个频率轮廓而言,却不是系统的。贝塞尔(Bessel)和崔威廉斯(Choi-Williams)发行版为音乐杂音提供了最佳表现。研究表明,尽管不能用单一技术对所有六个杂音进行优化,但使用30 ms汉明窗的频谱图对于检测六个模拟心脏杂音是可以接受的折衷方法。

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