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评估肌电图生物反馈在减少坐姿划船运动中斜方肌上部兴奋的可行性:一项非随机对照研究。

Assessing the Feasibility of EMG Biofeedback to Reduce the Upper Trapezius Muscle Excitation during a Seated Row Exercise, a Non-randomized Comparative Study.

机构信息

Laboratório de Biomecânica, Programa de Engenharia Biomédica (COPPE), Universidade Federal do Rio de Janeiro, Rio de Janeiro, RJ, Brazil.

Programa de Pós-Graduação em Ciências da Reabilitação, Centro Universitário Augusto Motta (UNISUAM), Rio de Janeiro, Brazil.

出版信息

Appl Psychophysiol Biofeedback. 2024 Dec;49(4):577-587. doi: 10.1007/s10484-024-09657-y. Epub 2024 Aug 23.

Abstract

The upper trapezius muscle is often excessively excited during resistance training exercises, increasing the shoulder's liability to musculoskeletal disorders of individuals participating in overhead sports or throwing activities. Different approaches have been proposed for reducing the potentially harmful loading of the upper trapezius. None, however, has been devised to deal directly with the main culprit: the muscle excitation. This non-randomized comparative study explores the feasibility of biofeedback based on surface electromyograms (EMGs) in suppressing undue excitation of the upper trapezius during a seated row exercise. Eight male volunteers were instructed to perform the wide-grip seated row exercise without and with the EMG biofeedback of the upper trapezius. Surface EMGs from the three portions of the trapezius and the serratus anterior were sampled with pairs of surface electrodes. A triaxial accelerometer was positioned on the weight stack for the identification of the exercise phase and repetition. This study showed that during the "with biofeedback" condition, the participants were able to activate the upper trapezius and serratus anterior to a lower degree (~ 10%) compared to the "without biofeedback" condition. Future studies should explore if this can lead to greater gains in muscle performance and/or reduce the risk of shoulder injury.

摘要

斜方肌上部在抗阻训练中经常过度兴奋,增加了参与过顶运动或投掷活动的个体的肌肉骨骼疾病的风险。已经提出了不同的方法来减少斜方肌上部的潜在有害负荷。然而,还没有设计出直接针对主要罪魁祸首的方法:肌肉兴奋。本非随机对照研究探讨了基于表面肌电图(EMG)的生物反馈在抑制坐姿划船运动中斜方肌上部过度兴奋的可行性。8 名男性志愿者被指示在不使用和使用斜方肌上部 EMG 生物反馈的情况下进行宽握坐姿划船运动。使用一对表面电极采集斜方肌的三个部分和前锯肌的表面 EMG。三轴加速度计放置在重量台上,用于识别运动阶段和重复次数。本研究表明,在“使用生物反馈”的情况下,与“不使用生物反馈”的情况相比,参与者能够将斜方肌上部和前锯肌激活到较低的程度(约 10%)。未来的研究应该探讨这是否可以带来更大的肌肉性能提升,或降低肩部受伤的风险。

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