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姿势维持过程中初级运动皮层对瞬态和持续负荷的神经反应比较。

Comparison of neural responses in primary motor cortex to transient and continuous loads during posture.

作者信息

Herter Troy M, Korbel Tereza, Scott Stephen H

机构信息

Centre for Neuroscience Studies, Canadian Institute for Health Research Group in Sensory-Motor Systems, Department of Anatomy and Cell Biology, Queen's University, Botterell Hall, Room 219, Kingston, Ontario, Canada, K7L 3N6.

出版信息

J Neurophysiol. 2009 Jan;101(1):150-63. doi: 10.1152/jn.90230.2008. Epub 2008 Nov 12.

Abstract

The present study examined whether neurons in primary motor cortex (M1) exhibit similar responses to transient and continuous loads applied during posture. Rapid responses to whole-limb perturbations were examined by transiently applying (300 ms) flexor and extensor torques to the shoulder and/or elbow during postural maintenance. Over half of M1 neurons responded to these transient loads within 80 ms and many responded within 20-40 ms. These rapid responses exhibited a broad continuum of modulation patterns across load directions. At one extreme, neurons exhibited reciprocal increases and decreases in activity for opposing loads. At the other extreme, neurons (particularly those with onset times of 20-40 ms) displayed relatively uniform increases in activity for all loads. Activity of proximal arm muscles displayed a narrower distribution of modulation patterns characterized by broadly tuned excitation combined with little or no reciprocal inhibition. Both neurons and muscles showed a directional preference for whole-limb flexor and whole-limb extensor torques (flexor at one joint and extensor at the other). Most neurons with rapid responses also showed steady-state responses to continuous loads, although these responses generally displayed reciprocal increases and decreases in activity for opposing loads. Importantly, the preferred-torque directions were quantitatively similar across tasks. For example, a neuron with a maximal rapid response to a transient elbow flexor torque tended to exhibit a maximal steady-state response to a continuous elbow flexor torque. Activity of proximal arm muscles also showed this preservation of directional tuning. These results illustrate that M1 neurons respond rapidly to transient multijoint loads and their patterns of activity share some, but not all, features related to continuous multijoint loads applied during posture.

摘要

本研究考察了初级运动皮层(M1)中的神经元对姿势维持过程中施加的瞬态和持续负荷是否表现出相似的反应。通过在姿势维持期间向肩部和/或肘部短暂施加(300毫秒)屈肌和伸肌扭矩,研究了对全肢体扰动的快速反应。超过半数的M1神经元在80毫秒内对这些瞬态负荷做出反应,许多神经元在20 - 40毫秒内做出反应。这些快速反应在负荷方向上呈现出广泛的连续调制模式。在一个极端情况下,神经元对相反负荷表现出活动的反向增减。在另一个极端情况下,神经元(特别是那些起始时间为20 - 40毫秒的神经元)对所有负荷表现出相对均匀的活动增加。近端手臂肌肉的活动表现出较窄的调制模式分布,其特征是广泛调谐的兴奋与很少或没有反向抑制相结合。神经元和肌肉对全肢体屈肌和全肢体伸肌扭矩(一个关节为屈肌,另一个关节为伸肌)都表现出方向偏好。大多数具有快速反应的神经元对持续负荷也表现出稳态反应,尽管这些反应通常对相反负荷表现出活动的反向增减。重要的是,跨任务的首选扭矩方向在数量上相似。例如,对瞬态肘部屈肌扭矩有最大快速反应的神经元往往对持续肘部屈肌扭矩表现出最大稳态反应。近端手臂肌肉的活动也显示出这种方向调谐的保留。这些结果表明,M1神经元对瞬态多关节负荷反应迅速,并且它们的活动模式与姿势维持期间施加的持续多关节负荷相关的一些(但不是全部)特征相同。

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