Department of Sport Sciences, Sport Sciences School of Rio Maior, 2040-413 Rio Maior, Portugal.
Research Centre in Sports, Health and Human Development (CIDESD), 5000-801 Vila Real, Portugal.
Int J Environ Res Public Health. 2022 May 28;19(11):6590. doi: 10.3390/ijerph19116590.
The cycling literature is filled with reports of electromyography (EMG) analyses for a better understanding of muscle function during cycling. This research is not just limited to performance, as the cyclist’s goal may be rehabilitation, recreation, or competition, so a bicycle that meets the rider’s needs is essential for a more efficient muscular activity. Therefore, the purpose of this study was to understand the contribution of the activity of each of the following muscles: TD (trapezius descending), LD (latissimus dorsi), GM (gluteus maximus), and AD (anterior deltoid) in response to different bicycle-rider systems (handlebar height; bicycle frame length) and intensities in a bicycle equipped with a potentiometer. Surface EMG signals from muscles on the right side of the body were measured. A general linear model test was used to analyze the differences between muscle activation in the test conditions. Effect sizes were calculated using a partial Eta2 (η2). The level of significance was set at 0.05. Muscle activation of different muscles differs, depending on the cycling condition (Pillai’s trace = 2.487; F (36.69) = 9.300; p < 0.001. η2 = 0.958), mostly during low intensities. In high intensities, one specific pattern emerges, with a greater contribution of GM and TD and weaker participation of LD and AD, enhancing the cycling power output.
自行车运动文献中充满了肌电图(EMG)分析报告,这些报告有助于更好地理解骑行过程中的肌肉功能。这项研究不仅限于性能,因为自行车运动员的目标可能是康复、娱乐或比赛,所以满足骑手需求的自行车对于更高效的肌肉活动至关重要。因此,本研究的目的是了解在配备电位器的自行车上,不同的自行车-骑手系统(把手高度;车架长度)和强度下,以下肌肉的活动情况:TD(斜方肌下降)、LD(背阔肌)、GM(臀大肌)和 AD(三角肌前束)的贡献。测量了右侧身体各肌肉的表面肌电图信号。使用一般线性模型测试来分析测试条件下肌肉激活的差异。使用部分 Eta2(η2)计算效应大小。显著性水平设为 0.05。不同的肌肉在不同的骑行条件下的激活情况不同(Pillai 的轨迹=2.487;F(36.69)=9.300;p<0.001。η2=0.958),在低强度下差异最大。在高强度下,会出现一种特定的模式,GM 和 TD 的贡献更大,LD 和 AD 的参与度较弱,从而提高了自行车的功率输出。