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Pseudo-Period Segment of Ballistocardiogram Based on Joint Time-Frequency Analysis

机译:基于联合时频分析的心电图伪周期段

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摘要

Heart beat causes the synchronous body vibration, which can be measured on the spine axis by sensitive force sensor called ballistocardiogram. Ballistocardiogram was a kind of non-stationary physiological signal, which couldn't be analyzed and processed by traditional signal processing method. The generation and acquisition method of ballistocardiogram were explained. As examples of bilinear and linear time-frequency distribution, the Cohen class distribution and wavelet transform were discussed and used in ballistocardigram pseudo-period segment. In addition, the frequency range of ballistocardiogram and the levels of wavelet decomposition were determined by Cohen class distribution, but the performance of exponential distribution is better than that of Wigner-Ville distribution and has a fine correspondence to time domain wave of actual ballistocardigram. The experiment results show that, bilinear and linear time-frequency distribution are both able to divide ballistocardiogram into pseudo-periods corresponding to cardiac cycle, but the segment performance of wavelet decomposition is better than that of Cohen class distribution, and the latter one is terser to realize.
机译:心跳会引起身体同步振动,这种振动可以通过称为心动描记图的灵敏力传感器在脊柱轴上进行测量。心动描记图是一种非平稳的生理信号,传统的信号处理方法无法对其进行分析和处理。解释了心动描记图的产生和获取方法。作为双线性和线性时频分布的示例,讨论了Cohen类分布和小波变换并将其用于心电图伪周期段。此外,心电图的频率范围和小波分解的水平由Cohen类分布确定,但指数分布的性能优于Wigner-Ville分布,并且与实际心电图的时域波具有良好的对应关系。实验结果表明,双线性和线性时频分布都能够将心电图分为心动周期对应的伪周期,但小波分解的分割性能优于Cohen类分布,后者是terser意识到。

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