Nandedkar S D, Sanders D B, Stålberg E V
Muscle Nerve. 1986 Jun;9(5):423-30. doi: 10.1002/mus.880090507.
The electromyographic (EMG) interference pattern (IP) was simulated by adding together motor unit action potentials (MUAPs) of different sizes that had been recorded by a concentric needle EMG electrode. The number of turns (NT) of the simulated IP increased with the number of MUAP discharges. The mean amplitude (MA) difference between successive turns in the IP increased when large amplitude MUAPs were added. Our analysis demonstrates that the MA of the IP is determined mainly by the amplitude of large MUAPs in the signal and that large amplitude spikes are more likely to be generated by single large amplitude MUAPs than by summation of several small amplitude MUAPs.
通过将同心针肌电图电极记录的不同大小的运动单位动作电位(MUAPs)相加,模拟肌电图(EMG)干扰模式(IP)。模拟IP的匝数(NT)随着MUAP放电次数的增加而增加。当加入大幅度MUAPs时,IP中连续匝数之间的平均幅度(MA)差异增大。我们的分析表明,IP的MA主要由信号中大幅度MUAPs的幅度决定,并且大幅度尖峰更有可能由单个大幅度MUAPs产生,而不是由几个小幅度MUAPs的总和产生。