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在两种不同扭矩水平的静态工作期间肩部肌肉的疲劳情况。

Fatigue in the shoulder muscles during static work at two different torque levels.

作者信息

Gerdle B, Edström M, Rahm M

机构信息

Department of Physical Medicine and Rehabilitation, University of Umeå, Sweden.

出版信息

Clin Physiol. 1993 Sep;13(5):469-82. doi: 10.1111/j.1475-097x.1993.tb00463.x.

Abstract

The present study aimed to investigate whether and when a shift in the mean power frequency (MPF) of the electromyogram (EMG) occurs at low torque levels during a maximum endurance test of three shoulder flexors. Twelve clinically healthy women performed two endurance tests of the shoulder flexors (at 50% MVC--the high torque level, and at approximately 18% MVC--the low torque level) until maximum exhaustion. Surface EMG were obtained and MPF and signal amplitude (RMS) were computed for the trapezius descendens, the anterior part of the deltoid and the infraspinatus. The subjects also rated the perception of fatigue in the shoulder muscles throughout the two tests using a 10-graded scale. A significantly higher degree of perceived fatigue was found at the low rather than at the high torque level. In contrast significantly lower MPF were found at the end of the endurance times in the three muscles at the high torque level when compared to the low torque level. At the low torque level MPF of the trapezius was constant throughout the test. In the deltoid the most prominent decrease occurred during the initial 30-40% of the endurance time at the low torque level. It is suggested that the MPF shift mainly reflects peripheral fatigue of the type-2 fibres. The results of the present study question the use of the MPF shift to monitor peripheral fatigue in the fibres active (mainly type-1) at low torque levels.

摘要

本研究旨在调查在三种肩部屈肌的最大耐力测试中,低扭矩水平下肌电图(EMG)的平均功率频率(MPF)是否以及何时发生变化。12名临床健康女性进行了两次肩部屈肌耐力测试(50%最大自主收缩——高扭矩水平,以及约18%最大自主收缩——低扭矩水平),直至极度疲劳。采集表面肌电图,并计算斜方肌下部、三角肌前部和冈下肌的MPF和信号幅度(均方根值)。在两项测试过程中,受试者还使用10级量表对肩部肌肉的疲劳感知进行评分。结果发现,低扭矩水平下的疲劳感知程度明显高于高扭矩水平。相比之下,与低扭矩水平相比,高扭矩水平下三种肌肉在耐力测试结束时的MPF显著降低。在低扭矩水平下,斜方肌的MPF在整个测试过程中保持恒定。在三角肌中,最显著的下降发生在低扭矩水平下耐力测试最初的30%-40%期间。研究表明,MPF变化主要反映2型纤维的外周疲劳。本研究结果对使用MPF变化来监测低扭矩水平下活跃纤维(主要是1型)的外周疲劳提出了质疑。

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