Wakeling James M
School of Kinesiology, Simon Fraser University, Burnaby, British Columbia, Canada V5A 1S6.
Biol Lett. 2009 Feb 23;5(1):30-4. doi: 10.1098/rsbl.2008.0459.
Muscles are commonly assumed to have uniform activations across their bellies. Yet animal studies have shown that different regions across a muscle can vary in their architecture, fibre type, levels of activation and the transfer of forces to the bones and tendons. The purpose of this study was to test whether regional variations in activity occurred across the soleus, medial gastrocnemius and lateral gastrocnemius in man, and whether these regional variations changed with altered mechanical demands on the limb. Arrays of surface electrodes were placed over these muscles and the electromyograms (EMG) measured for a range of cycling tasks where the resistance and pedal velocity was independently altered. Significant variations in the magnitude and timing of the EMG occurred across these muscles, which were most pronounced in the gastrocnemii and occurred in both the proximodistal and mediolateral directions. The patterns of variation across the muscles changed in response to the altered mechanical demands during the cycling. It is likely that the muscle fascicles in the gastrocnemii contribute varied mechanical functions to the contractions that depend on both their location within the muscle belly and on the mechanical requirements of the movement.
人们通常认为肌肉在其肌腹上具有均匀的激活。然而,动物研究表明,一块肌肉内的不同区域在结构、纤维类型、激活水平以及向骨骼和肌腱的力传递方面可能存在差异。本研究的目的是测试人类比目鱼肌、腓肠肌内侧头和腓肠肌外侧头是否存在活动的区域差异,以及这些区域差异是否会随着肢体机械需求的改变而变化。将表面电极阵列放置在这些肌肉上,并在一系列骑行任务中测量肌电图(EMG),其中阻力和踏板速度是独立改变的。这些肌肉的肌电图大小和时间存在显著差异,在腓肠肌中最为明显,且在近端 - 远端和内侧 - 外侧方向均有出现。在骑行过程中,随着机械需求的改变,肌肉间的变化模式也会发生改变。腓肠肌中的肌束可能为收缩贡献了不同的机械功能,这既取决于它们在肌腹内的位置,也取决于运动的机械需求。