Department of Sport, Exercise and Rehabilitation, Northumbria University, Newcastle upon Tyne, UK.
Sport and Physical Activity Research Centre, Sheffield Hallam University, Sheffield, UK.
J Sports Sci. 2022 Jun;40(12):1315-1324. doi: 10.1080/02640414.2022.2080159. Epub 2022 Jun 28.
The aim was to investigate the effects of a gym-based strength training intervention on biomechanics and intermuscular coordination patterns during short-term maximal cycling. Twelve track sprint cyclists performed 3 × 4 s seated sprints at 135 rpm, interspersed with 2 × 4 s seated sprints at 60 rpm on an isokinetic ergometer, repeating the session 11.6 ± 1.4 weeks later following a training programme that included two gym-based strength training sessions per week. Joint moments were calculated via inverse dynamics, using pedal forces and limb kinematics. EMG activity was measured for 9 lower limb muscles. Track cyclists 'leg strength" increased (7.6 ± 11.9 kg, = 0.050 and ES = 0.26) following the strength training intervention. This was accompanied by a significant increase in crank power over a complete revolution for sprints at 135 rpm (26.5 ± 36.2 W, = 0.028 and ES = 0.29). The increase in leg strength and average crank power was associated with a change in biceps femoris muscle activity, indicating that the riders successfully adapted their intermuscular coordination patterns to accommodate the changes in personal constraints to increase crank power.
目的是研究基于健身房的力量训练干预对短期最大自行车运动中生物力学和肌肉间协调模式的影响。12 名场地短跑自行车运动员在等动测力计上以 135 rpm 的速度进行了 3 次×4 秒的坐姿冲刺,然后以 60 rpm 的速度进行了 2 次×4 秒的坐姿冲刺,11.6 ± 1.4 周后重复进行了一次训练课程,该课程包括每周两次基于健身房的力量训练课程。通过反动力学,使用踏板力和肢体运动学计算关节力矩。测量了 9 块下肢肌肉的肌电图活动。经过力量训练干预后,场地自行车运动员的“腿部力量”增加了(7.6 ± 11.9 千克, = 0.050 和 ES = 0.26)。这伴随着在 135 rpm 进行冲刺时整个旋转曲柄功率的显著增加(26.5 ± 36.2 W, = 0.028 和 ES = 0.29)。腿部力量和平均曲柄功率的增加与股二头肌肌肉活动的变化有关,这表明骑手成功地调整了他们的肌肉间协调模式,以适应增加曲柄功率的个人限制的变化。