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首页> 外文期刊>Journal of Neurophysiology >Activation of type-identified motor units during centrally evoked contractions in the cat medial gastrocnemius muscle. III. Muscle-unit force modulation.
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Activation of type-identified motor units during centrally evoked contractions in the cat medial gastrocnemius muscle. III. Muscle-unit force modulation.

机译:在猫内侧腓肠肌中央诱发的收缩过程中激活类型识别的运动单位。三,肌肉单位力量调制。

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1. The aim of this study was to examine the extent of muscle-unit force modulation due to motoneuron firing-rate variation in type-identified motor units of the cat medial gastrocnemius (MG) muscle, and to investigate the contribution of muscle-unit force modulation to whole-muscle force regulation. The motoneuron discharge patterns recorded from 8 pairs of motor units during 12 smoothly graded muscle contractions evoked by stimulation of the mesencephalic locomotor region (MLR) were used to reactivate those units in isolation to estimate what their force profiles would have been like during the evoked whole-muscle contractions. 2. For most motor units, muscle-unit force modulation was similar to motoneuron firing-rate modulation, in that muscle-unit force increased over a limited range (120-600 g) of increasing whole-muscle tension and was then maintained at a near maximal (> 70%) output level as muscle force continued to rise. Most muscle units also decreased their force outputs over a slightly larger range of declining whole-muscle force before relaxing. This second finding was best explained by the counterclockwise hysteresis recorded in the motor units' frequency-tension (f-t) relationships. 3. In those instances when whole-muscle force fluctuated just above the recruitment threshold of a motor unit, a substantial percentage (10-25%) of the change in whole-muscle force could be accounted for by force modulation in that motor unit alone. This finding suggested that few motor units in the pool were simultaneously simultaneously undergoing force modulation. To evaluate this possibility, the extent of parallel muscle-unit force modulation within the 8 pairs of simultaneously active motor units was evaluated. As with parallel motoneuron firing-rate modulation, the extent of parallel muscle-unit force modulation was limited to unit pairs of the same physiological type and recruitment threshold. In several instances, pairs of motor units displayed parallel motoneuron firing-rate modulation but did not show parallel muscle-unit force modulation because of the nature of the motor units' f-t relationships. 4. The limited extent of parallel muscle-unit force modulation seen in these experiments implies that the major strategy for force modulation in the cat MG muscle, involving contractions estimated to reach 30-40% of maximum, may be motor-unit recruitment rather than motor-unit firing-rate variation with resulting force modulation. Given, however, that the majority of motor units are already recruited at these output levels (< 40%), it is proposed that motor-unit firing-rate variation with resulting force modulation may take over as the major muscle force modulating strategy at higher output levels.
机译:1.这项研究的目的是研究猫内侧腓肠肌(MG)肌肉的类型确定的运动单位中运动神经元激发速率变化引起的肌肉单位力量调节的程度,并研究该肌肉单位的作用力量调制到全肌肉力量调节。在通过刺激中脑运动区域(MLR)诱发的12个平滑渐变的肌肉收缩过程中,从8对运动单元记录的运动神经元放电模式用于独立激活这些单元,以估计它们在整个诱发过程中的力分布-肌肉收缩。 2.对于大多数运动单位,肌肉单位的力量调节类似于运动神经元的射击速率调节,因为肌肉单位的力量在增加全肌肉张力的有限范围内(120-600 g)增加,然后保持在随着肌肉力量的持续提高,接近最大输出水平(> 70%)。在放松之前,大多数肌肉单位也会在整体肌肉力量下降的较大范围内降低力量输出。记录在电动机单元的频率-张力(f-t)关系中的逆时针磁滞可以很好地解释第二个发现。 3.在整个肌肉力波动刚好超过运动单元的征服阈值的情况下,仅通过该运动单元的力调制就可以解释整个肌肉力变化的很大一部分(10-25%) 。这一发现表明,水池中很少有电机同时进行力调制。为了评估这种可能性,评估了8对同时活动的电机单元中平行肌肉单元力量调制的程度。与平行运动神经元激发速率调制一样,平行肌肉单位力量调制的程度仅限于相同生理类型和募集阈值的单位对。在某些情况下,由于运动单元的f-t关系的性质,成对的运动单元显示出平行的运动神经元激发速率调制,但没有显示出平行的肌肉单元力调制。 4.在这些实验中看到的平行肌肉单位力量调节的程度有限,这意味着猫MG肌肉中力量调节的主要策略(包括估计达到最大收缩量的30-40%)可能是运动单位募集而不是运动电动机单位的点火速度变化以及由此产生的力调制。但是,考虑到大多数运动单位已经在这些输出水平上被征用(<40%),因此建议将运动单位的发动速率变化以及由此产生的力调制作为主要的肌肉力调制策略来代替。输出水平。

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