Fridén J, Seger J, Sjöström M, Ekblom B
Int J Sports Med. 1983 Aug;4(3):177-83. doi: 10.1055/s-2008-1026031.
The peripheral adaptation process associated with repeating eccentric training over a longer period of time was studied in m. vastus lateralis of eleven healthy males aged 24 +/- 4 years. The maximal dynamic concentric muscle strength was only slightly improved after 8 weeks of training. However, eccentric work capacity was dramatically increased (375%). A maximal eccentric stint immediately after fulfilled 8 weeks of training caused a selective glycogen depletion from the type 28 fibers. An increased number of type 2C fibers was observed. The ultrastructure analysis showed an essentially well-preserved fine structure. Volume density of mitochondria was somewhat higher in all fiber types after training. Z-band widths were not affected by eccentric training. It is concluded that skeletal musculature adapts itself in a functional manner to the extreme tension demands put on them. Improved coordination and reorganization of the contractile apparatus of muscle fibers are the determining mechanisms of this adaptation.
在11名年龄为24±4岁的健康男性的股外侧肌中,研究了与长时间重复离心训练相关的外周适应过程。训练8周后,最大动态向心肌肉力量仅略有改善。然而,离心工作能力显著提高(375%)。在完成8周训练后立即进行的最大离心运动导致2B型纤维选择性糖原耗竭。观察到2C型纤维数量增加。超微结构分析显示基本保存完好的精细结构。训练后所有纤维类型中线粒体的体积密度均有所升高。Z带宽度不受离心训练的影响。结论是,骨骼肌以功能方式适应施加于它们的极端张力需求。肌肉纤维收缩装置的协调性改善和重组是这种适应的决定性机制。