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与伸展相关和与扭矩相关的活动在肱二头肌和初级运动皮层神经元中的分布不均。

Nonuniform distribution of reach-related and torque-related activity in upper arm muscles and neurons of primary motor cortex.

作者信息

Kurtzer Isaac, Herter Troy M, Scott Stephen H

机构信息

Centre for Neuroscience Studies, Botterell Hall, Rm 232, Queen's University, Kingston, Ontario, K7L 3N6, Canada.

出版信息

J Neurophysiol. 2006 Dec;96(6):3220-30. doi: 10.1152/jn.00110.2006. Epub 2006 Sep 27.

Abstract

The present study examined the activity of primate shoulder and elbow muscles using a novel reaching task. We enforced similar patterns of center-out movement while the animals countered viscous loads at their shoulder, elbow, both joints, or neither joint. Accordingly, we could examine reach-related activity during the unloaded condition and torque-related activity by comparing activity across load conditions. During unloaded reaching the upper arm muscles exhibited a bimodal distribution of preferred hand direction. Maximal reach-related activity occurred with hand movements mostly toward or away from the body. Arm muscles also exhibited a bimodal distribution of their preferred torque direction. Maximal torque-related activity typically occurred with shoulder-extension/elbow-flexion torque or shoulder-flexion/elbow-extension torque. Similar biases in reach-related and torque-related activity could be reproduced by optimizing a global measure of muscle activity. These biases were also observed in the neural activity of primary motor cortex (M1). The parallels between M1 and muscular activity demonstrate another link between motor cortical processing and the motor periphery and may reflect an optimization process performed by the sensorimotor system.

摘要

本研究使用一种新颖的够物任务来检测灵长类动物肩部和肘部肌肉的活动。我们在动物抵抗肩部、肘部、双关节或无关节处的粘性负荷时,强制其进行类似的从中心向外运动模式。因此,通过比较不同负荷条件下的活动,我们可以检测无负荷条件下与够物相关的活动以及与扭矩相关的活动。在无负荷够物过程中,上臂肌肉表现出偏好手部方向的双峰分布。最大的与够物相关的活动发生在手部运动主要朝向或远离身体时。手臂肌肉还表现出偏好扭矩方向的双峰分布。最大的与扭矩相关的活动通常发生在肩部伸展/肘部屈曲扭矩或肩部屈曲/肘部伸展扭矩时。通过优化肌肉活动的整体测量,可以重现与够物相关和与扭矩相关活动中的类似偏差。在初级运动皮层(M1)的神经活动中也观察到了这些偏差。M1与肌肉活动之间的相似性证明了运动皮层处理与运动外周之间的另一种联系,并且可能反映了感觉运动系统执行的一种优化过程。

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