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首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >Feedback controlled force enhancement and activation reduction of voluntarily activated quadriceps femoris during sub-maximal muscle action
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Feedback controlled force enhancement and activation reduction of voluntarily activated quadriceps femoris during sub-maximal muscle action

机译:亚最大肌肉动作过程中自愿控制的股四头肌的反馈控制力增强和激活减少

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摘要

Stretch of activated muscles leads to enhanced forces compared to isometric contractions at the same muscle length and the same level of activation. This so-called residual force enhancement (RFE) is thought to be a property of all muscles and preparations. However, observations concerning the existence, amount and duration of RFE are inconsistent, especially for voluntary activated large human muscles. Therefore, physiological relevance for daily activity is still questionable and the purpose of this study was to examine whether RFE is present in voluntary sub-maximal activated quadriceps femoris (QF). Seated in a rotational dynamometer with EMG attached to superficial parts of QF, 30 subjects performed isometric and isometric-eccentric-isometric contractions (20° stretch, ω=60°s ~(-1)) at 30% and 60% of maximum voluntary activation (MVA) and contraction (MVC). To account for the complexity of the multi-headed QF, a compensation model based on physiological cross-sectional area and individual EMG-torque relations was used to interpret EMG data. For both levels of intensity and both feedback control strategies, ANOVA identified significant RFE (at the same level of activation) and reduced activation (at the same level of torque). Against expectations, RFE was independent of the level of activation.
机译:与在相同的肌肉长度和相同的激活水平下的等距收缩相比,激活的肌肉的拉伸导致增强的力。这种所谓的残余力增强(RFE)被认为是所有肌肉和准备活动的属性。但是,关于RFE的存在,数量和持续时间的观察结果不一致,尤其是对于自愿激活的大型人体肌肉。因此,对于日常活动的生理相关性仍然是有疑问的,本研究的目的是检查RFE是否存在于自愿性次最大股四头肌(QF)中。坐在旋转测力计上,肌电图附着在QF的浅表部分,有30名受试者以最大自愿者的30%和60%进行等距和等距-等距-等距收缩(20°拉伸,ω= 60°s〜(-1))激活(MVA)和收缩(MVC)。为了解决多头QF的复杂性,基于生理截面积和单个EMG-扭矩关系的补偿模型用于解释EMG数据。对于强度水平和反馈控制策略,ANOVA均确定了显着的RFE(在相同的激活水平下)和减少的激活(在相同的转矩水平下)。与预期相反,RFE与激活级别无关。

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