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首页> 外文期刊>Journal of Neurophysiology >Motor-unit synchronization alters spike-triggered average force in simulated contractions.
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Motor-unit synchronization alters spike-triggered average force in simulated contractions.

机译:电机单位同步会更改模拟收缩中尖峰触发的平均力。

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The purpose of the study was to quantify the effect of motor-unit synchronization on the spike-triggered average forces of a population of motor units. Muscle force was simulated by defining mechanical and activation characteristics of the motor units, specifying motor neuron discharge times, and imposing various levels of motor-unit synchronization. The model comprised 120 motor units. Simulations were performed for motor units 5-120 to compare the spike-triggered average responses in the presence and absence of motor-unit synchronization with the motor-unit twitch characteristics defined in the model. To synchronize motor-unit activity, selected motor-unit discharge times were adjusted; this kept the number of action potentials constant across the three levels of synchrony for each motor unit. Because there was some overlap of motor-unit twitches even at minimal discharge rates, the simulations indicated that spike-triggered averaging underestimates the twitch force of all motor units and the contraction time of motor units with contraction times longer than 49 ms. Although motor-unit synchronization increased the estimated twitch force and decreased the estimated contraction time of all motor units, spike-triggered average force changed systematically with the level of synchrony in motor units 59-120 (upper 90% of the range of twitch forces). However, the reduction in contraction time was similar for moderate and high synchrony. In conclusion, spike-triggered averaging appears to provide a biased estimate of the distribution of twitch properties for a population of motor units because twitch fusion causes an underestimation of twitch force for slow units and motor-unit synchronization causes an overestimation of force for fast motor units.
机译:该研究的目的是量化运动单元同步对一群运动单元的峰值触发平均力的影响。通过定义运动单元的机械特性和激活特性,指定运动神经元放电时间以及施加不同级别的运动单元同步来模拟肌肉力。该模型包括120个电机单元。对电机单元5-120进行了仿真,以比较在存在和不存在电机单元同步的情况下,尖峰触发的平均响应与模型中定义的电机单元抽动特性。为了使电动机活动同步,调整了选定的电动机放电时间;这使每个电机单元的三个同步水平上的动作电位数量保持恒定。因为即使在最小放电速率下,电机单元的抽动也会有一些重叠,所以模拟表明,尖峰触发的平均值低估了所有电机单元的抽动力和收缩时间大于49 ms的电机单元的收缩时间。尽管电动机单元同步增加了所有电动机单元的估计抽搐力并减少了估计的收缩时间,但是尖峰触发的平均力随着电动机单元59-120的同步水平而系统地变化(抽搐力范围的90%以上) 。但是,中度和高度同步性收缩时间的减少是相似的。总之,尖峰触发平均似乎为一组运动单位的运动特性提供了偏差的估计,因为运动融合导致低速单元的运动力低估,而运动单元同步导致快速运动的力过高估计单位。

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