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肌肉协同作用与等长扭矩产生:旋前和旋后程度对肘关节屈曲的影响。

Muscle synergies and isometric torque production: influence of supination and pronation level on elbow flexion.

作者信息

Jamison J C, Caldwell G E

机构信息

Department of Kinesiology, University of Maryland, College Park 20742.

出版信息

J Neurophysiol. 1993 Sep;70(3):947-60. doi: 10.1152/jn.1993.70.3.947.

Abstract
  1. Twenty normal subjects performed a series of isometric elbow flexion (F) maximum voluntary contractions (MVC) while simultaneously maintaining one of seven targeted torque levels in the supination/pronation (S/P) degree of freedom (df). Experimental measures were torque in both df s and surface electromyograms (EMG) from brachioradialis (BRAD), triceps brachii (TB), biceps brachii (BB) short head (BBSH), and a medial and lateral site on biceps brachii long head (MED BB and LAT BB). Task effects were tested for significance using analysis of covariance models for the torque and EMG variables. Polynomial multiple regression models were developed for significant effects. The synergism among muscles was examined by statistically testing the EMG data for differing responses to the S/P torque changes across the five electrode sites. 2. The magnitude of the S/P target torque had a statistically significant effect on flexion MVC (F MVC) torque. Changes in S/P torque markedly influenced the F MVC torque magnitude, with as much as a 25% F torque decrement relative to an F MVC with an S/P torque target of 0. This suggests that the second df task affects some aspect of joint function that causes the CNS to reduce F torque capacity. 3. The S/P torque had a significant effect on EMG amplitude at all electrode sites other than TB. The EMG amplitude at the BB sites responded strongly to both F and S/P torque changes. The F+S tasks tended to facilitate BB EMG, whereas the F+P tasks tended to diminish it. The BRAD EMG, although primarily related to F torque amplitude, also was influenced by the S/P torque changes. The trends for BRAD EMG were opposite those for the BB in that BRAD EMG tended to be enhanced by the F+P tasks and reduced by the F+S tasks. 4. The synergistic pattern of stimulation (i.e., the relationship among the 5 EMG amplitude measures) was also significantly influenced by the S/P df task. Significant differences in the EMG behavior between BBSH and LAT BB were detected; however, no statistically significant differences were found between LAT BB and MED BB. The EMG behaviors at the BRAD and TB electrode sites were significantly different from those at the BB sites. 5. These inversely related responses from the BB and BRAD stress the importance of understanding the relationship between muscular activity and the function of muscles in more than one df. This finding further suggests that the synergistic relationships between muscles are dynamically related to task in all applicable dfs. It is suggested that this dynamic synergism is a natural consequence of the redundant musculoskeletal system.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 20名正常受试者进行了一系列等长屈肘(F)最大自主收缩(MVC),同时在旋前/旋后(S/P)自由度(df)中维持七个目标扭矩水平之一。实验测量包括两个自由度的扭矩以及来自桡侧腕长伸肌(BRAD)、肱三头肌(TB)、肱二头肌短头(BBSH)和肱二头肌长头内侧和外侧部位(MED BB和LAT BB)的表面肌电图(EMG)。使用协方差分析模型对扭矩和EMG变量进行任务效应显著性检验。针对显著效应建立多项式多元回归模型。通过对五个电极部位对S/P扭矩变化的不同反应的EMG数据进行统计检验,来研究肌肉之间的协同作用。2. S/P目标扭矩的大小对屈肘MVC(F MVC)扭矩有统计学显著影响。S/P扭矩的变化显著影响F MVC扭矩大小,相对于S/P扭矩目标为0时的F MVC,F扭矩减少多达25%。这表明第二个自由度任务影响关节功能的某些方面,导致中枢神经系统降低F扭矩能力。3. S/P扭矩对除TB之外的所有电极部位的EMG幅度都有显著影响。肱二头肌部位的EMG幅度对F和S/P扭矩变化均有强烈反应。F + S任务倾向于促进肱二头肌EMG,而F + P任务倾向于使其减弱。BRAD EMG虽然主要与F扭矩幅度相关,但也受S/P扭矩变化影响。BRAD EMG的趋势与肱二头肌相反,即F + P任务倾向于增强BRAD EMG,而F + S任务倾向于使其降低。4. 刺激的协同模式(即5个EMG幅度测量值之间的关系)也受到S/P自由度任务的显著影响。检测到BBSH和LAT BB之间的EMG行为存在显著差异;然而,LAT BB和MED BB之间未发现统计学显著差异。BRAD和TB电极部位的EMG行为与肱二头肌部位的显著不同。5. 肱二头肌和BRAD的这些反向相关反应强调了理解多个自由度中肌肉活动与肌肉功能之间关系的重要性。这一发现进一步表明,肌肉之间的协同关系在所有适用的自由度中都与任务动态相关。有人认为这种动态协同作用是冗余肌肉骨骼系统的自然结果。(摘要截短至400字)

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