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Brain mechanisms that underlie the effects of motivational audiovisual stimuli on psychophysiological responses during exercise

机译:运动过程中动机视听刺激对心理生理反应的影响所基于的脑机制

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Motivational audiovisual stimuli such as music and video have been widely used in the realm of exercise and sport as a means by which to increase situational motivation and enhance performance. The present study addressed the mechanisms that underlie the effects of motivational stimuli on psychophysiological responses and exercise performance. Twenty-two participants completed fatiguing isometric handgrip-squeezing tasks under two experimental conditions (motivational audiovisual condition and neutral audiovisual condition) and a control condition. Electrical activity in the brain and working muscles was analyzed by use of electroencephalography and electromyography, respectively. Participants were asked to squeeze the dynamometer maximally for 30 s. A single-item motivation scale was administered after each squeeze. Results indicated that task performance and situational motivational were superior under the influence of motivational stimuli when compared to the other two conditions (similar to 20% and similar to 25%, respectively). The motivational stimulus downregulated the predominance of low-frequency waves (theta) in the right frontal regions of the cortex (F8), and upregulated high-frequency waves (beta) in the central areas (C3 and C4). It is suggested that motivational sensory cues serve to readjust electrical activity in the brain; a mechanism by which the detrimental effects of fatigue on the efferent control of working muscles is ameliorated. (C) 2016 Elsevier Inc. All rights reserved.
机译:诸如音乐和视频之类的激励性视听刺激已被广泛用于运动和体育领域,以此作为增加情境动机和提高绩效的手段。本研究解决了动机刺激对心理生理反应和运动表现的影响的机制。 22名参与者在两个实验条件(动机视听条件和中性视听条件)和控制条件下完成了疲劳等距握紧任务。分别通过脑电图和肌电图分析大脑和工作肌肉中的电活动。要求参与者将测力计最大挤压30 s。每次挤压后,都要给予单项动机量表。结果表明,与其他两个条件相比,在动机刺激的影响下,任务绩效和情境动机具有优越性(分别接近20%和25%)。动机刺激下调了皮质右额叶区域(F8)中低频波(theta)的优势,并在中部区域(C3和C4)中上调了高频波(beta)。有人提出,动机感官提示可以重新调节大脑的电活动。一种改善疲劳对传出的工作肌肉控制的有害作用的机制。 (C)2016 Elsevier Inc.保留所有权利。

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