Weytjens J L, van Steenberghe D
Biol Cybern. 1984;51(2):71-7. doi: 10.1007/BF00357919.
A realistic model for two synchronized motor unit action potential trains (MUAPT) is presented in which the variability of the time difference between corresponding action potentials (hereafter denoted by delay) is taken into account. Specifically, this delay is modeled as a continuous random variable that may assume both positive and negative values. Expressions are derived for the auto- and cross-power spectra of two such trains using their relations with the auto- and cross-correlation functions, respectively, with which they form Fourier transform pairs. The results show that the auto- and the cross-power spectra of two such synchronized MUAPTs differ from the auto- and the cross-spectra of two independent MUAPTs. The contribution of the statistics of the interpulse intervals to one of the auto-power spectra is smaller and the cross-power spectra no longer reduce to a Dirac sigma-function at the origin but are now determined by the other auto-power spectrum and by the Fourier transform of the density function associated with the time difference between corresponding action potentials. As a consequence of this change in the cross-power spectra synchronization leads to an absolute increase of power at low frequencies and to a relative decrease of power at high frequencies. The results are then generalized to electromyograms (EMG) composed of more than just two MUAPTs and illustrated with simulated power spectra with which the theory shows excellent agreement.
本文提出了一个针对两个同步运动单位动作电位序列(MUAPT)的现实模型,其中考虑了相应动作电位之间时间差的变异性(以下称为延迟)。具体而言,该延迟被建模为一个连续随机变量,其取值可为正也可为负。利用两个这样的序列与自相关函数和互相关函数的关系,分别推导了它们的自功率谱和互功率谱的表达式,它们与自相关函数和互相关函数构成傅里叶变换对。结果表明,两个这样的同步MUAPT的自功率谱和互功率谱不同于两个独立MUAPT的自功率谱和互功率谱。脉冲间期统计量对其中一个自功率谱的贡献较小,互功率谱不再在原点处简化为狄拉克δ函数,而是由另一个自功率谱以及与相应动作电位之间时间差相关的密度函数的傅里叶变换决定。由于互功率谱的这种变化,同步导致低频处功率绝对增加,高频处功率相对降低。然后将结果推广到由不止两个MUAPT组成的肌电图(EMG),并用模拟功率谱进行说明,理论与模拟结果显示出极佳的一致性。