Viitasalo J T, Bosco C
Eur J Appl Physiol Occup Physiol. 1982;48(2):253-61. doi: 10.1007/BF00422986.
The relationships of muscle structure to the potentiation of myoelectrical activity and to the use of prestretching in five lower limb muscles were studied in different vertical jumping conditions. The subjects for the study were six male students, divided according to the muscle fiber distribution in m. vastus lateralis into "fast" and "slow" groups. The subjects performed vertical jumps (1) from a static squatting position (DJ) from five different heights. Myoelectrical (EMG) activity was recorded from mm. gluteus maximus, vastus lateralis, vastus medialis, rectus femoris and gastrocnemius in each jumping condition and integrated (IEMG) for the eccentric and concentric phases of contact. EMG activity showed potentiation during the eccentric phase of movement when compared to the concentric phase. The "fast" and "slow" groups did not differ significantly in this respect, whereas in DJ conditions the relative (% from SJ) height of rise of the center of gravity was greater in the "slow" than in the "fast" group. The result indicated that the utilization of elastic energy during jumping was possible better in subjects having a high percentage of slow twitch muscle fibres in their vastus lateralis muscles.
在不同的垂直跳跃条件下,研究了五种下肢肌肉的结构与肌电活动增强以及预拉伸使用之间的关系。该研究的受试者为六名男学生,根据股外侧肌的肌纤维分布分为“快”组和“慢”组。受试者从五个不同高度的静态蹲姿位置(DJ)进行垂直跳跃。在每种跳跃条件下,记录臀大肌、股外侧肌、股内侧肌、股直肌和腓肠肌的肌电(EMG)活动,并对接触的离心和向心阶段进行积分(IEMG)。与向心阶段相比,运动的离心阶段肌电活动表现出增强。在这方面,“快”组和“慢”组没有显著差异,而在DJ条件下,“慢”组重心上升的相对高度(相对于SJ的百分比)高于“快”组。结果表明,股外侧肌中慢肌纤维百分比高的受试者在跳跃过程中可能更好地利用弹性能量。