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首页> 外文期刊>The Journal of Physiology >Presynaptic control of group Ia afferents in relation to acquisition of a visuo-motor skill in healthy humans.
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Presynaptic control of group Ia afferents in relation to acquisition of a visuo-motor skill in healthy humans.

机译:与获得健康人的视觉运动技能有关的Ia组传入神经突触前控制。

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Sensory information continuously converges on the spinal cord during a variety of motor behaviours. Here, we examined presynaptic control of group Ia afferents in relation to acquisition of a novel motor skill. We tested whether repetition of two motor tasks with different degrees of difficulty, a novel visuo-motor task involving the ankle muscles, and a control task involving simple voluntary ankle movements, would induce changes in the size of the soleus H-reflex. The slope of the H-reflex recruitment curve and the H-max/M-max ratio were depressed after repetition of the visuo-motor skill task and returned to baseline after 10 min. No changes were observed after the control task. To elucidate the mechanisms contributing to the H-reflex depression, we measured the size of the long-latency depression of the soleus H-reflex evoked by peroneal nerve stimulation (D1 inhibition) and the size of the monosynaptic Ia facilitation of the soleus H-reflex evoked by femoral nerve stimulation. The D1 inhibition was increased and the femoral nerve facilitation was decreased following the visuo-motor skill task, suggesting an increase in presynaptic inhibition of Ia afferents. No changes were observed in the disynaptic reciprocal Ia inhibition. Somatosensory evoked potentials (SEPs) evoked by stimulation of the tibial nerve (TN) were also unchanged, suggesting that transmission in ascending pathways was unaltered following the visuo-motor skill task. Together these observations suggest that a selective presynaptic control of Ia afferents contributes to the modulation of sensory inputs during acquisition of a novel visuo-motor skill in healthy humans.
机译:在各种运动行为过程中,感觉信息不断在脊髓上汇聚。在这里,我们检查了与新运动技能的获得有关的Ia组传入神经突触控制。我们测试了重复执行两个难度不同的运动任务,涉及脚踝肌肉的新型视觉运动任务以及涉及简单的自发性踝关节运动的控制任务是否会引起比目鱼H反射大小的变化。重复运动运动技能任务后,降低H反射募集曲线的斜率和H-max / M-max比,并在10分钟后恢复到基线。控制任务后未观察到任何变化。为了阐明促成H反射抑制的机制,我们测量了腓总神经刺激(D1抑制)引起的比目鱼H反射长时延抑郁的大小和比目鱼H-的单突触Ia大小。股神经刺激引起的反射。视觉运动技能任务后,D1抑制作用增加,而股神经的促进作用减弱,表明对Ia传入神经的突触前抑制作用增加。在突触对立的Ia抑制中未观察到变化。刺激胫神经(TN)诱发的体感诱发电位(SEPs)也未改变,这表明在进行视觉运动技能任务后,上升途径的传递没有改变。这些观察结果共同表明,对Ia传入神经的选择性突触前控制有助于在健康人中获得新的视觉运动技能的过程中调节感觉输入。

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