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猫在姿势任务期间腓肠肌内侧肌牵张反射幅度的区域变异性。

Regional variability of stretch reflex amplitude in the cat medial gastrocnemius muscle during a postural task.

作者信息

Eng J J, Hoffer J A

机构信息

School of Kinesiology, Simon Fraser University, Burnaby, British Columbia, Canada.

出版信息

J Neurophysiol. 1997 Aug;78(2):1150-4. doi: 10.1152/jn.1997.78.2.1150.

DOI:10.1152/jn.1997.78.2.1150
PMID:9307142
Abstract

The relationship between local fibre stretch velocity (mechanical input) and the corresponding local reflex electromyographic (EMG) amplitude (a measure of the neural output) was assessed to determine the contribution of muscle spindle feedback in postural control. We hypothesized that traditionally measured input variables (e.g., the velocity of an external movement or whole muscle velocity) may not accurately represent the mechanical input to the muscle spindles, especially when the background forces are small. Three cats were trained to stand on pedestals while ankle rotations were applied to the left hindlimb. EMG and fiber movement in both proximal and distal regions of the muscle were recorded in addition to muscle length and tendon force. We found that local muscle velocity was correlated poorly with whole muscle velocity, demonstrating that internal and external muscle movements are often dissimilar, particularly during tasks that involve modest levels of muscle activation. Local EMG reflex amplitudes were correlated well with the corresponding local fiber stretch velocities (R values ranging from 0.5 to 0.8) but not with muscle stretch velocity. The lack of crossed correlations between fiber stretch velocities and reflex EMG amplitudes measured in proximal versus distal regions of the muscle suggests the presence of a local reflex component. It is concluded that changes in local muscle fiber length represent the mechanical input to spindles better than changes in the total muscle length. Additionally, spindles have a specific role in the reflex activation of nearby muscle fibers.

摘要

评估局部纤维拉伸速度(机械输入)与相应的局部反射肌电图(EMG)幅度(神经输出的一种度量)之间的关系,以确定肌梭反馈在姿势控制中的作用。我们假设,传统测量的输入变量(例如,外部运动速度或整块肌肉速度)可能无法准确代表对肌梭的机械输入,尤其是在背景力较小时。训练三只猫站在基座上,同时对左后肢施加踝关节旋转。除了记录肌肉长度和肌腱力外,还记录了肌肉近端和远端区域的肌电图和纤维运动。我们发现局部肌肉速度与整块肌肉速度的相关性很差,这表明内部和外部肌肉运动通常是不同的,特别是在涉及适度肌肉激活水平的任务中。局部肌电图反射幅度与相应的局部纤维拉伸速度相关性良好(R值范围为0.5至0.8),但与肌肉拉伸速度无关。在肌肉近端和远端区域测量的纤维拉伸速度与反射肌电图幅度之间缺乏交叉相关性,这表明存在局部反射成分。得出的结论是,局部肌肉纤维长度的变化比整块肌肉长度的变化更能代表对肌梭的机械输入。此外,肌梭在附近肌肉纤维的反射激活中具有特定作用。

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