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收缩装置中的结构重排及由此导致的骨骼肌重塑:运动训练的影响

Structural rearrangements in contractile apparatus and resulting skeletal muscle remodelling: effect of exercise training.

作者信息

Seene T, Kaasik P, Umnova M

机构信息

Institute of Exercise Biology and Physiotherapy, University of Tartu, Tartu, Estonia.

出版信息

J Sports Med Phys Fitness. 2009 Dec;49(4):410-23.

Abstract

This review briefly summarizes studies that examine fast- and slow-twitch skeletal muscles and the ultra- and molecular structure of fibre types, including intrafusal fibres, during adaptation to exercise training. Adaptation capability of skeletal muscle to different types of exercise training depends on rearrangements in the contractile apparatus, mitochondria, other fibre organelles and neuromuscular junctions. Skeletal muscle functional capacity depends on structural changes in fibre organelles and is related to higher centres of motor control as the adaptation process needs information about muscle length and speed of contraction at any time during the training process. The renewal of the contractile apparatus in skeletal muscle during exercise training supports the qualitative remodelling of muscle so that the muscle contraction is better suited to the new conditions. The effectiveness of metabolic processes in new conditions depends on the structural-functional relationships between the energy system and contractile machinery in muscle fibres.

摘要

本综述简要总结了一些研究,这些研究探讨了在适应运动训练过程中,快肌和慢肌骨骼肌以及包括肌梭纤维在内的纤维类型的超微结构和分子结构。骨骼肌对不同类型运动训练的适应能力取决于收缩装置、线粒体、其他纤维细胞器和神经肌肉接头的重新排列。骨骼肌的功能能力取决于纤维细胞器的结构变化,并且与运动控制的高级中枢相关,因为在训练过程中的任何时候,适应过程都需要有关肌肉长度和收缩速度的信息。运动训练期间骨骼肌收缩装置的更新支持肌肉的质性重塑,从而使肌肉收缩更适合新的条件。在新条件下代谢过程的有效性取决于肌肉纤维中能量系统与收缩机制之间的结构-功能关系。

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