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气温对股四头肌肌电图/力量关系的影响。

The influence of air temperature on the EMG/force relationship of the quadriceps.

作者信息

Bell D G

机构信息

Defence and Civil Institute of Environmental Medicine, North York, Ontario, Canada.

出版信息

Eur J Appl Physiol Occup Physiol. 1993;67(3):256-60. doi: 10.1007/BF00864225.

Abstract

Surface electromyography (EMG) in the past has been used to estimate the intensity of muscle contraction. These estimates were derived from the EMG/force relationship measured at room temperature. How the surface EMG signal is influenced by varying air temperature as it relates to the EMG/force relationship has yet to be investigated. Thus, this study evaluated the influence of different air temperatures (10, 23 and 40 degrees C) on surface EMG during contractions of the quadriceps muscle. Ten subjects [mean (SD) age 29 (7) years and weight 78.3 (7.8) kg] performed a criterion task of five contractions ranging from 10 to 100% of a maximal voluntary contraction, five times over a 1.5-h period in all conditions. The EMG signals generated from the rectus femoris, and the forces associated with the contractions, were captured on FM tape and subsequently digitized at a sampling rate of 2000 Hz. The relationship between EMG and force was different under the different conditions; EMG was reduced at a given force as temperature increased, and the EMG increased in the 10 degrees C environment over time. The differences that occurred at the various temperatures were believed to be related to fluid distribution in the muscle, muscle conduction velocity and sweating. The data imply that the EMG/force relationship measured using surface electrodes is influenced by ambient temperature.

摘要

过去,表面肌电图(EMG)一直被用于估计肌肉收缩的强度。这些估计值是从室温下测量的肌电图/力量关系中得出的。表面肌电信号如何受到与肌电图/力量关系相关的不同气温的影响,尚未得到研究。因此,本研究评估了不同气温(10、23和40摄氏度)对股四头肌收缩期间表面肌电图的影响。十名受试者[平均(标准差)年龄29(7)岁,体重78.3(7.8)千克]在所有条件下,于1.5小时内进行了五次收缩的标准任务,收缩强度范围为最大自主收缩的10%至100%。从股直肌产生的肌电信号以及与收缩相关的力量,被记录在调频磁带上,随后以2000赫兹的采样率进行数字化处理。在不同条件下,肌电图与力量之间的关系有所不同;随着温度升高,在给定力量下肌电图降低,并且在10摄氏度环境中,肌电图随时间增加。在不同温度下出现的差异被认为与肌肉中的液体分布、肌肉传导速度和出汗有关。数据表明,使用表面电极测量的肌电图/力量关系受环境温度影响。

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