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运动皮层神经元的顺序激活通过调节肌肉协同作用有助于猫在伸展过程中的肢体内协调。

Sequential activation of motor cortical neurons contributes to intralimb coordination during reaching in the cat by modulating muscle synergies.

机构信息

Département de physiologie, Université de Montréal, Pavillon Paul-G Desmarais, C.P. 6128, Succursale Centre ville, Montŕeal, Qúebec H3C 3J7, Canada.

出版信息

J Neurophysiol. 2011 Jan;105(1):388-409. doi: 10.1152/jn.00469.2010. Epub 2010 Nov 10.

Abstract

We examined the contribution of the motor cortex to the control of intralimb coordination during reaching in the standing cat. We recorded the activity of 151 pyramidal tract neurons (PTNs) in the forelimb representation of three cats during a task in which the cat reached forward from a standing position to press a lever. We simultaneously recorded the activity of muscles in the contralateral forelimb acting around each of the major joints. Cell activity was recorded with and without the presence of an obstacle requiring a modification of limb trajectory. The majority of the PTNs (134/151, 89%) modulated their discharge activity at some period of the reach while 84/151 (56%) exhibited a significant peak or trough of activity as the limb was transported from its initial position to the lever. These phasic changes of activity were distributed sequentially throughout the transport phase. A cluster analysis of muscle activity in two of the cats showed the presence of five muscle synergies during this transport period. One of the synergies was related to the lift of the paw from the support surface, two to flexion of the limb and dorsiflexion of the paw, one to preparation for contact with the lever, and one to the transport of the entire limb forward; a sixth synergy was activated during the lever press. An analysis of the phase of cell activity with respect to the phase of activity of muscles selected to represent each of these synergies showed that different populations of PTNs were activated sequentially and coincidentally with each synergy. We suggest that this sequential activation of populations of PTNs is compatible with a contribution to the initiation and modulation of functionally distinct groups of synergistic muscles and ultimately serves to ensure the appropriate multiarticular, intralimb coordination of the limb during reaching.

摘要

我们研究了运动皮层在站立猫的向前伸展过程中对肢体内部协调控制的贡献。在一项任务中,我们记录了三只猫的前肢代表区中 151 个皮质脊髓神经元(PTN)的活动,在该任务中,猫从站立姿势向前伸展以按下杠杆。我们同时记录了作用于每个主要关节周围的对侧前肢肌肉的活动。在存在需要修改肢体轨迹的障碍物的情况下和不存在障碍物的情况下记录细胞活动。大多数 PTN(134/151,89%)在伸展的某个阶段调制其放电活动,而 84/151(56%)在肢体从初始位置运输到杠杆时表现出显著的活动峰或谷。这些相位变化的活动在运输阶段中顺序分布。对两只猫的肌肉活动进行聚类分析表明,在这段运输期间存在五个肌肉协同作用。其中一个协同作用与爪子从支撑表面抬起有关,两个与肢体弯曲和爪子背屈有关,一个与接触杠杆的准备有关,一个与整个肢体向前运输有关;第六个协同作用在按下杠杆时被激活。对细胞活动相位与代表这些协同作用中每一个的肌肉活动相位的分析表明,不同的 PTN 群体依次被激活,并且与每个协同作用巧合。我们认为,这种 PTN 群体的顺序激活与对功能不同的协同肌肉群的启动和调制有关,并最终有助于确保在伸展过程中肢体的适当多关节、内部协调。

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