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次最大耐力收缩后低阈值运动单位的锋电位触发平均扭矩和肌纤维传导速度。

Spike-triggered average torque and muscle fiber conduction velocity of low-threshold motor units following submaximal endurance contractions.

作者信息

Farina Dario, Arendt-Nielsen Lars, Graven-Nielsen Thomas

机构信息

Center for Sensory-Motor Interaction, Dept. of Health Science and Technology, Aalborg Univ., Fredrik Bajers Vej 7 D-3, DK-9220 Aalborg, Denmark.

出版信息

J Appl Physiol (1985). 2005 Apr;98(4):1495-502. doi: 10.1152/japplphysiol.01127.2004. Epub 2004 Nov 12.

Abstract

The motor unit twitch torque is modified by sustained contraction, but the association to changes in muscle fiber electrophysiological properties is not fully known. Thus twitch torque, muscle fiber conduction velocity, and action potential properties of single motor units were assessed in 11 subjects following an isometric submaximal contraction of the tibialis anterior muscle until endurance. The volunteers activated a target motor unit at the minimum discharge rate in eight 3-min-long contractions, three before and five after an isometric contraction at 40% of the maximal torque, sustained until endurance. Multichannel surface electromyogram signals and joint torque were averaged with the target motor unit potential as trigger. Discharge rate (mean +/- SE, 6.6 +/- 0.2 pulses/s) and interpulse interval variability (33.3 +/- 7.0%) were not different in the eight contractions. Peak twitch torque and recruitment threshold increased significantly (93 +/- 29 and 12 +/- 5%, P <0.05) in the contraction immediately after the endurance task with respect to the preendurance values (0.94 +/- 0.26 mN.m and 3.7 +/- 0.5% of the maximal torque), whereas time to peak of the twitch torque did not change (74.4 +/- 10.1 ms). Muscle fiber conduction velocity decreased and action potential duration increased in the contraction after the endurance (6.3 +/- 1.8 and 9.8 +/- 1.8%, respectively, P <0.05; preendurance values, 3.9 +/- 0.2 m/s and 11.1 +/- 0.8 ms), whereas the surface potential peak-to-peak amplitude did not change (27.1 +/- 3.1 microV). There was no significant correlation between the relative changes in muscle fiber conduction velocity or surface potential duration and in peak twitch torque (R2= 0.04 and 0.10, respectively). In conclusion, modifications in peak twitch torque of low-threshold motor units with sustained contraction are mainly determined by mechanisms not related to changes in action potential shape and in its propagation velocity.

摘要

运动单位的单收缩扭矩会受到持续收缩的影响,但其与肌纤维电生理特性变化之间的关联尚不完全清楚。因此,在11名受试者进行胫骨前肌次最大等长收缩直至耐力极限后,评估了单运动单位的单收缩扭矩、肌纤维传导速度和动作电位特性。志愿者在八次3分钟的收缩中,以最低放电频率激活目标运动单位,其中三次在最大扭矩40%的等长收缩之前,五次在该等长收缩之后,持续至耐力极限。以目标运动单位电位为触发信号,对多通道表面肌电图信号和关节扭矩进行平均。八次收缩中的放电频率(平均值±标准误,6.6±0.2次/秒)和脉冲间期变异性(33.3±7.0%)无差异。与耐力任务前的值(0.94±0.26毫牛顿·米和最大扭矩的3.7±0.5%)相比,耐力任务后的即刻收缩中,峰值单收缩扭矩和募集阈值显著增加(分别增加93±29%和12±5%,P<0.05),而单收缩扭矩达到峰值的时间未改变(74.4±10.1毫秒)。耐力任务后的收缩中,肌纤维传导速度降低,动作电位持续时间增加(分别为6.3±1.8%和9.8±1.8%,P<0.05;耐力任务前的值分别为3.9±0.2米/秒和11.1±0.8毫秒),而表面电位峰峰值幅度未改变(27.1±3.1微伏)。肌纤维传导速度或表面电位持续时间的相对变化与峰值单收缩扭矩之间无显著相关性(R2分别为0.04和0.10)。总之,低阈值运动单位的峰值单收缩扭矩随持续收缩的变化主要由与动作电位形状及其传播速度变化无关的机制决定。

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