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卧推和划船时肩袖肌肉的定向募集。

Direction-specific recruitment of rotator cuff muscles during bench press and row.

机构信息

Discipline of Biomedical Science, Sydney Medical School, The University of Sydney, Australia.

出版信息

J Electromyogr Kinesiol. 2011 Dec;21(6):1041-9. doi: 10.1016/j.jelekin.2011.09.002. Epub 2011 Oct 5.

Abstract

Recent studies indicate that rotator cuff (RC) muscles are recruited in a reciprocal, direction-specific pattern during shoulder flexion and extension exercises. The main purpose of this study was to determine if similar reciprocal RC recruitment occurs during bench press (flexion-like) and row (extension-like) exercises. In addition, shoulder muscle activity was comprehensively compared between bench press and flexion; row and extension; and bench press and row exercises. Electromyographic (EMG) activity was recorded from 9 shoulder muscles sites in 15 normal volunteers. All exercises were performed at 20, 50 and 70% of subjects' maximal load. EMG data were normalized to standard maximal voluntary contractions. Infraspinatus activity was significantly higher than subscapularis during bench press, with the converse pattern during the row exercise. Significant differences in activity levels were found in pectoralis major, deltoid and trapezius between the bench press and flexion exercises and in lower trapezius between the row and extension exercises. During bench press and row exercises, the recruitment pattern in each active muscle did not vary with load. During bench press and row exercises, RC muscles contract in a reciprocal direction-specific manner in their role as shoulder joint dynamic stabilizers to counterbalance antero-posterior translation forces.

摘要

最近的研究表明,在进行肩屈伸运动时,肩袖(RC)肌肉以相互的、方向特定的模式募集。本研究的主要目的是确定在卧推(类似屈伸)和划船(类似伸展)运动中是否存在类似的 RC 反向募集。此外,还全面比较了卧推和屈伸、划船和伸展以及卧推和划船运动之间的肩部肌肉活动。通过 15 名正常志愿者的 9 个肩部肌肉部位记录肌电图(EMG)活动。所有运动均在受试者最大负荷的 20%、50%和 70%下进行。EMG 数据归一化为标准最大随意收缩。在卧推时,肩胛下肌的活动明显高于冈下肌,而在划船运动时则相反。在卧推和屈伸运动中,胸大肌、三角肌和斜方肌之间以及划船和伸展运动中,下斜方肌之间的活动水平存在显著差异。在卧推和划船运动中,每个主动肌的募集模式随负荷而变化。在卧推和划船运动中,RC 肌肉以相互的、方向特定的方式收缩,作为肩关节的动力稳定剂,以平衡前后平移力。

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