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六次最大重复负荷卧推中疲劳对黏着区和肌电图的影响。

Fatigue effects upon sticking region and electromyography in a six-repetition maximum bench press.

机构信息

a Nord Trøndelag University College , Levanger , Norway.

出版信息

J Sports Sci. 2013;31(16):1823-30. doi: 10.1080/02640414.2013.803593. Epub 2013 Jul 23.

Abstract

The aim of the study was to examine the sticking region and concomitant neuromuscular activation of the prime movers during six-repetition maximum (RM) bench pressing. We hypothesised that both peak velocities would decrease and that the electromyography (EMG) of the prime movers (deltoid, major pectoralis and triceps) would increase during the pre-sticking and sticking region during the six repetitions due to fatigue. Thirteen resistance-trained males (age 22.8 ± 2.2 years, stature 1.82 ± 0.06 m, body mass 83.4 ± 7.6 kg) performed 6-RM bench presses. Barbell kinematics and EMG activity of pectoralis major, deltoid anterior, and triceps brachii during the pre-, sticking and post-sticking region of each repetition in a 6-RM bench press were analysed. For both the sticking as the post-sticking region, the time increased significantly from the first to the sixth repetition. Vertical barbell height at the start of sticking region was lower, while the height at the end of the sticking region and post-sticking region did not change during the six repetitions. It was concluded that in 6-RM bench pressing performance, the sticking region is a poor mechanical force region due to the unchanged barbell height at the end of the sticking region. Furthermore, when fatigue occurs, the pectoralis and the deltoid muscles are responsible for surpassing the sticking region as indicated by their increased activity during the pre- and sticking region during the six-repetitions bench press.

摘要

本研究旨在探讨 6 次最大重复(RM)卧推过程中主动肌的黏滞区及其伴随的神经肌肉激活情况。我们假设由于疲劳,在 6 次重复的预黏滞区和黏滞区中,两个峰值速度都会降低,并且主动肌(三角肌、胸大肌和肱三头肌)的肌电图(EMG)也会增加。13 名受过抗阻训练的男性(年龄 22.8 ± 2.2 岁,身高 1.82 ± 0.06 m,体重 83.4 ± 7.6 kg)进行了 6-RM 卧推。分析了在 6-RM 卧推的每一次重复的预黏滞区、黏滞区和黏滞后区中胸大肌、三角肌前束和肱三头肌的杠铃运动学和 EMG 活动。对于黏滞区和黏滞后区,从第一次重复到第六次重复,时间显著增加。在黏滞区开始时,垂直杠铃高度较低,而在黏滞区结束时和黏滞后区,杠铃高度在 6 次重复中没有变化。结论是,在 6-RM 卧推中,由于黏滞区结束时杠铃高度不变,因此黏滞区是一个力学性能较差的区域。此外,当疲劳发生时,胸大肌和三角肌通过在 6 次重复卧推的预黏滞区和黏滞区中增加活动来负责克服黏滞区。

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