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Micro-piezoelectric pulse diagnoser and frequency domain analysis of human pulse signals

机译:微压电脉冲诊断仪和人体脉冲信号的频域分析

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Background:The theory of pulse diagnosis is to assess the physiological condition of the human body using radial pulse.However,pulses can vary markedly from person to person.Further,pulse diagnosis is difficult to learn and requires one-on-one teaching.Methods:To address this problem,we built a home-made pulse diagnoser and measured human pulses for studying the standardization of pulse diagnosis.Our pulse diagnoser was composed of a piezoelectric transducer,differential amplifier,data acquisition instrument,and a Matlab analysis program.The measured pulses were converted into electronic signals by a piezoelectric transducer and saved on a computer.The digitalized data were then refined and analyzed by fast Fourier transform for frequency analysis.Simulations were performed to assess the factors that affected the pulse,including phase shifts of reflected pulse waves (generate sub-peaks in pulses),inconsistent heart rates (deform pulse waves),the vessel stiffness (alter harmonic frequencies of the pulses),and the wave amplitudes (determined by the pulse strength).Results:By comparing a published report and our simulation findings,we characterized the pulse types and the effects of various factors,and then applied the findings to study actual pulses in patients.Three types of pulses were determined from the frequency spectrumchoppy pulse (Se mai) without apparent harmonic peaks,the harmonic frequencies of wiry pulse (Xian mai) that are non-integer multiples of the fundamental frequency,and surging pulse (Hong mai) that exhibit strong amplitudes in the spectrum of frequency.A normal pulse and a slippery pulse were differentiated by a phase shift,but not by assessing the frequency spectrum.Conclusion:These findings confirm that frequency domain analysis can avoid ambiguity arising in assessing the three types of pulses in the time domain.Further studies of other pulses in the frequency domain are required to develop a precise electronic pulse diagnoser.
机译:背景:脉搏诊断的原理是利用放射状脉搏评估人体的生理状况,但是脉搏在人与人之间会有明显差异。此外,脉搏诊断很难学习,需要一对一的教学。 :为了解决这个问题,我们建立了一个自制的脉冲诊断仪并测量了人体脉冲,以研究脉冲诊断的标准化。我们的脉冲诊断仪由压电传感器,差分放大器,数据采集仪器和Matlab分析程序组成。测量的脉冲通过压电换能器转换为电子信号并保存在计算机上,然后数字化的数据经过快速傅里叶变换进行精炼和分析以进行频率分析,并进行仿真以评估影响脉冲的因素,包括反射的相移脉搏波(在脉搏中产生亚峰),心率不一致(脉搏波变形),血管僵硬(谐波频率改变)结果:通过比较已发表的报告和我们的仿真发现,我们对脉冲类型和各种因素的影响进行了表征,然后将这些发现应用于实际研究中。从没有明显谐波峰值的频谱波动脉冲(Se mai),无线脉冲(Xian mai)的谐波频率(不是基频的整数倍)和波动脉冲(Hong mai)在频率频谱上表现出很强的幅度。正常脉冲和滑脉冲通过相移来区分,但不通过评估频谱来区分。结论:这些发现证实频域分析可以避免在评估频谱时产生歧义。时域中的三种类型的脉冲。需要进一步研究频域中的其他脉冲,以开发出精确的电子脉冲诊断器。

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  • 来源
    《中医科学杂志(英文)》 |2018年第001期|35-42|共8页
  • 作者单位

    Beijing University of Chinese Medicine, Beijing 100029, China;

    YIYIHERBS Instrument Research and Development of Traditional Chinese Medicine, Plano, 75023, TX,USA;

    Beijing University of Chinese Medicine, Beijing 100029, China;

    Beijing University of Chinese Medicine, Beijing 100029, China;

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  • 入库时间 2022-08-19 04:28:24
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