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向心收缩和离心收缩过程中运动单位的活动。

Activity of motor units during concentric and eccentric contractions.

作者信息

Moritani T, Muramatsu S, Muro M

机构信息

Human Performance Laboratory, Kyoto University, Japan.

出版信息

Am J Phys Med. 1987 Dec;66(6):338-50.

PMID:3324772
Abstract

Motor unit activity was investigated in the biceps brachii of twelve men during concentric (CC) and eccentric (EC) contractions by means of computer aided intramuscular spike amplitude-frequency (ISAF) histograms and surface EMG frequency power spectral analyses. Simultaneous recordings of the intramuscular and surface EMG signals were made during both types of contractions with the elbow joint angle varying from 30 to 150 degrees in reference to a fully extended position. Results demonstrated that r.m.s. amplitude and mean power frequency of the surface EMG were significantly higher during CC, particularly at shorter muscle length; e.g., 259 vs. 131 microV (p less than 0.01) and 102 vs. 91 Hz (p less than 0.05). The intramuscular spike recordings made at 45, 90 and 135 degrees showed greater motor unit (MU) activities during CC along with the presence of MUs with relatively large spike amplitude. The pooled data on the ISAF histograms revealed significantly greater mean MU spike amplitude and frequency during CC as compared to EC; e.g., 439 vs. 108 microV and 16.1 vs. 13.0 Hz at 135 degrees, respectively. These data suggest that EC is associated with much less pronounced MU recruitment and rate modulation due to economical tension development which might be a result of better utilization of elastic energy, particularly those inherent in the actin-myosin cross bridges and also a favorable length-tension relationship under the present experimental conditions.

摘要

通过计算机辅助肌内尖峰幅度 - 频率(ISAF)直方图和表面肌电图频率功率谱分析,研究了12名男性肱二头肌在向心(CC)和离心(EC)收缩过程中的运动单位活动。在两种收缩类型中,同时记录肌内和表面肌电图信号,肘关节角度相对于完全伸展位置在30度至150度之间变化。结果表明,表面肌电图的均方根幅度和平均功率频率在向心收缩期间显著更高,特别是在较短肌肉长度时;例如,259微伏对131微伏(p小于0.01)和102赫兹对91赫兹(p小于0.05)。在45度、90度和135度进行的肌内尖峰记录显示,向心收缩期间运动单位(MU)活动更大,同时存在具有相对较大尖峰幅度的运动单位。ISAF直方图的汇总数据显示,与离心收缩相比,向心收缩期间平均运动单位尖峰幅度和频率显著更大;例如,在135度时分别为439微伏对108微伏和16.1赫兹对13.0赫兹。这些数据表明,由于经济的张力发展,离心收缩与不太明显的运动单位募集和速率调制相关,这可能是更好地利用弹性能量的结果,特别是肌动蛋白 - 肌球蛋白横桥中固有的能量,以及在当前实验条件下有利的长度 - 张力关系。

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