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自我调节力量和神经肌肉反应在疲劳等长腿部伸展时,锚定在感知用力的等级上。

Self-Regulated Force and Neuromuscular Responses During Fatiguing Isometric Leg Extensions Anchored to a Rating of Perceived Exertion.

机构信息

Human Performance Laboratory, Department of Nutrition and Health Sciences, College of Education and Human Sciences, University of Nebraska-Lincoln, 110 Ruth Leverton Hall, Lincoln, NE, 68583-0806, USA.

Division of Kinesiology, School of Kinesiology and Physical Therapy, University of Central Florida, Orlando, FL, 32816, USA.

出版信息

Appl Psychophysiol Biofeedback. 2019 Dec;44(4):343-350. doi: 10.1007/s10484-019-09450-2.

Abstract

The purpose of the study was to examine the fatigue-related patterns of responses for electromyography (EMG), mechanomyography (MMG), and force during a sustained isometric muscle action anchored to RPE = 5. Ten men (22.9 ± 2.0 year) performed maximal voluntary isometric contractions (MVIC) prior to and following an isometric leg extension muscle action, which was sustained for a maximal time-limit of 5 min or until it could not be maintained at RPE = 5 (actual time-limit). EMG amplitude (AMP), EMG mean power-frequency (MPF), MMG AMP, MMG MPF, and force values were determined every 5% of the actual time-limit. Regression analyses were used to examine the neuromuscular parameters and force responses, and a t test was used to examine MVIC. The pretest MVIC (62.4 ± 14.3 kg) was significantly (p < 0.001; d = 1.07) greater than posttest (47.9 ± 12.8 kg). The percent decline in force during the sustained isometric muscle action was 47.5 ± 19.6%, and there was a significant, negative force versus time relationship (p < 0.001; R = - 0.980). There was a significant, negative EMG AMP versus time relationship (p < 0.001; R = -0.789), but no significant (p > 0.05) relationships for EMG MPF, MMG AMP, or MMG MPF versus time. The findings indicated that it was necessary to reduce force and EMG AMP to maintain RPE = 5. We hypothesize that the maintenance of RPE = 5 was initially accomplished by an anticipatory feedforward mechanism and then continuous integrations of afferent feedback, which resulted in reductions of EMG AMP and force, due to reductions in neural drive, to attenuate the impact of metabolic byproducts.

摘要

这项研究的目的是检查肌电图(EMG)、机械肌电图(MMG)和力在与 RPE=5 相关的疲劳模式下的反应。10 名男性(22.9±2.0 岁)在进行等长腿部伸展肌肉动作之前和之后进行最大自主等长收缩(MVIC),该动作持续最大时间限制为 5 分钟或直至无法以 RPE=5(实际时间限制)维持。每隔 5%的实际时间限制,确定 EMG 幅度(AMP)、EMG 平均功率频率(MPF)、MMG AMP、MMG MPF 和力值。回归分析用于检查神经肌肉参数和力响应,t 检验用于检查 MVIC。预测试的 MVIC(62.4±14.3 kg)显著(p<0.001;d=1.07)高于后测试(47.9±12.8 kg)。在等长肌肉动作持续期间力的下降百分比为 47.5±19.6%,并且存在显著的力与时间的负相关关系(p<0.001;R=-0.980)。存在显著的 EMG AMP 与时间的负相关关系(p<0.001;R=-0.789),但 EMG MPF、MMG AMP 或 MMG MPF 与时间无显著关系(p>0.05)。研究结果表明,有必要降低力和 EMG AMP 以维持 RPE=5。我们假设,最初通过预期前馈机制来维持 RPE=5,然后是传入反馈的连续整合,导致 EMG AMP 和力的减少,这是由于神经驱动的减少,以减轻代谢副产物的影响。

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