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首页> 外文期刊>Journal of applied physiology >The proportion of common synaptic input to motor neurons increases with an increase in net excitatory input
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The proportion of common synaptic input to motor neurons increases with an increase in net excitatory input

机译:普通突触输入对电机神经元的比例随着净兴奋输入的增加而增加

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alpha-Motor neurons receive synaptic inputs from spinal and supraspinal centers that comprise components either common to the motor neuron pool or independent. The input shared by motor neurons-common input-determines force control. The aim of the study was to investigate the changes in the strength of common synaptic input delivered to motor neurons with changes in force and with fatigue, two conditions that underlie an increase in the net excitatory drive to the motor neurons. High-density surface electromyogram (EMG) signals were recorded from the tibialis anterior muscle during contractions at 20, 50, and 75% of the maximal voluntary contraction force (in 3 sessions separated by at least 2 days), all sustained until task failure. EMG signal decomposition identified the activity of a total of 1,245 motor units. The coherence values between cumulative motor unit spike trains increased with increasing force, especially for low frequencies. This increase in coherence was not observed when comparing two subsets of motor units having different recruitment thresholds, but detected at the same force level. Moreover, the coherence values for frequencies <5 Hz increased at task failure with respect to the beginning of the contractions for all force levels. In conclusion, the results indicated that the relative strength of common synaptic input to motor neurons increases with respect to independent input when the net excitatory drive to motor neurons increases as a consequence of a change in force and fatigue.
机译:α-电机神经元接收来自脊柱和袋脊柱中心的突触输入,包括用于电动机神经元池或独立的常见组件。通过电机神经元共享的输入 - 常见输入 - 确定力控制。该研究的目的是探讨常见突触输入强度的变化,随着力量和疲劳的变化和疲劳,两个条件下降到电机神经元的净兴奋驱动增加。在20,50和75%的最大自愿收缩力的收缩期间从胫骨前肌(在至少2天分开的3次)期间从胫骨前肌记录高密度表面电谱(EMG)信号,所有直到任务发生故障。 EMG信号分解识别总共1,245个电机单元的活动。累积电机单元尖峰列车之间的相干值随着力量的增加而增加,特别是对于低频。当比较具有不同招生阈值的电动机单元的两个子集时,未观察到相干的这种增加,但在相同的力水平下检测到。此外,对于所有力水平的收缩开始,频率<5Hz的相干值<5Hz增加。总之,结果表明,当由于力和疲劳的变化而增加,当电动机神经元的净兴奋驱动增加时,相对于电动机神经元的净兴奋性驱动增加,相同突触输入对电动机神经元的相对强度增加。

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