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The vastus lateralis neuromuscular activity during all-out cycling exercise

机译:全程自行车运动中的股外侧肌神经肌肉活动

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Objective: The objective of this work was to study modifications in motor control through surface electromyographic (sEMG) activity during a very short all-out cycling exercise. Methods: Twelve male cyclists (age 23 +/- 4 years) participated in this study. After a warm-up period, each subject performed three all-out cycling exercises of 6 s separated by 2 min of complete rest. This protocol was repeated three times with a minimum of 2 days between each session. The braking torque imposed on cycling motion was 19 N m. The sEMG of the vastus lateralis was recorded during the first seven contractions of the sprint. Time-frequency analysis of sEMG was performed using continuous wavelet transform. The mean power frequency (MPF, qualitative modifications in the recruitment of motor units) and signal energy (a quantitative indicator of modifications in the motor units recruitment) were computed for the frequency range 10-500 Hz. Results: sEMG energy increased (P <= 0.05) between contraction number 1 and 2, decreased (P <= 0.05) between contraction number 2 and 3 then stabilized between contraction number 3 and 7 during the all-out test. MPF increased (P <= 0.05) during the all-out test. This increase was more marked during the first two contractions. Conclusions: The decrease in energy and the increase in the sEMG MPF suggest a large spatial recruitment of motor units (MUs) at the beginning of the sprint followed by a preferential recruitment of faster MUs at the end of the sprint, respectively.
机译:目的:这项工作的目的是研究在非常短的全程自行车运动过程中通过表面肌电图(sEMG)活动对运动控制的修改。方法:十二名男性自行车手(年龄23 +/- 4岁)参加了这项研究。在预热期之后,每个受试者进行3次6 s的全面自行车运动,并分别间隔2分钟以完全休息。重复该协议三遍,每次会话之间至少间隔2天。施加于自行车运动的制动扭矩为19 N m。短跑的前七个收缩期间记录了股外侧肌的sEMG。使用连续小波变换对sEMG进行时频分析。计算了10-500 Hz频率范围内的平均功率频率(MPF,补充了电动机单位的质量变化)和信号能量(改进了电动机单位的变化定量指标)。结果:在全力测试中,sEMG能量在收缩数1和2之间增加(P <= 0.05),在收缩数2和3之间降低(P <= 0.05),然后在收缩数3和7之间稳定。在全面测试中,MPF升高(P <= 0.05)。在前两次收缩期间,这种增加更为明显。结论:能量的减少和sEMG MPF的增加表明,在冲刺开始时会大量招募运动单位(MU),然后在冲刺结束时分别优先招募更快的MU。

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