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Synchronization of single motor units during voluntary contractions in the upper and lower extremities.

机译:上肢和下肢自愿收缩期间单个运动单位的同步。

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OBJECTIVE: To investigate motor unit synchronization in the time and frequency domains and compare the amount and nature of this synchronization between upper and lower extremity muscles in human subjects. METHODS: A total of 120 motor unit pairs from biceps brachii (BB), first dorsal interosseous (1DI), vastus medialis (VM), and tibialis anterior (TA) on the dominant side were analyzed and compared. Pairs of motor unit spike trains were recorded from two concentric needle electrodes inserted within these muscles in healthy volunteers. Subjects were instructed to maintain a weak isometric contraction of these muscles so that an individual motor unit recorded from each concentric needle discharged at a steady rate of approximately 10 impulses/s. Pairs of motor unit spike trains were cross-correlated in the time domain, and coherence analysis in the frequency domain was performed on the same spike train data. RESULTS: Synchronization was seen in all the muscles studied. Strength of motor unit synchronization, expressed as synchronization index (SI), was greater in 1DI muscles compared to other muscles (P<0.01). Coherence analysis revealed significant association between motor unit firings in the 1--5 and 25--30 Hz frequency ranges in all the muscles studied. The incidence of 25--30 Hz coherence peaks were found to be greater for 1DI muscles compared to other muscles. CONCLUSION: The above results suggest a possible role for corticospinal projections in producing pre-synaptic inputs responsible for synchronization of motor unit firings and 25--30 Hz coherence peaks.
机译:目的:在时域和频域中研究运动单位同步,并比较人类受试者上下肢肌肉之间这种同步的数量和性质。方法:分析并比较了来自肱二头肌(BB),第一背骨间(1DI),股内侧肌(VM)和胫前肌(TA)的120对运动单位。在健康志愿者中,从插入在这些肌肉内的两个同心针状电极记录了成对的运动单位峰值运动。指示受试者保持这些肌肉的等距收缩较弱,以便从每个同心针上记录的单个运动单位以大约10脉冲/秒的稳定速率放电。成对的电机单元尖峰序列在时域中是互相关的,而频域的相干分析是对相同的尖峰序列数据进行的。结果:在所有研究的肌肉中均观察到同步。 1DI肌肉的运动单位同步强度(以同步指数(SI)表示)比其他肌肉要大(P <0.01)。相干分析显示,在所有研究的肌肉中,在1--5 Hz和25--30 Hz频率范围内的运动单位射击之间存在显着关联。与其他肌肉相比,1DI肌肉的25--30 Hz相干峰的发生率更高。结论:以上结果表明皮质脊髓突触可能在产生突触前输入中可能发挥作用,该输入负责运动单位放电和25--30 Hz相干峰的同步。

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