Deschenes M R, Covault J, Kraemer W J, Maresh C M
Department of Physiology and Neurobiology, University of Connecticut, Storrs.
Sports Med. 1994 Jun;17(6):358-72. doi: 10.2165/00007256-199417060-00003.
The neuromuscular junction (NMJ) of adult mammalian muscle is the site of the transduction of electrical stimuli, generated by the nervous system, to the underlying muscle fibres, resulting in muscle action. It has been demonstrated that, in some ways, the morphology of the NMJ is specific to muscle fibre type. It is also known that while the structure of the NMJ generally remains stable in young, healthy adults, a subtle form of remodelling continuously occurs at this synapse. The morphology and physiology of the NMJ have been shown to adapt to both increased, and decreased use. Indeed, morphological changes of the NMJ are associated with functional alterations in neuromuscular transmission. Increased activity of the myoneural synapse results in adaptations that enhance neuromuscular transmission and, thus, muscle performance. Similarly to increased usage, decreased neuromuscular activity results in structural alterations of the NMJ. However, unlike those responses observed with enhanced activity, decreased recruitment of the myoneural synapse can impair neuromuscular transmission and muscle performance. Thus, the NMJ demonstrates both anatomical and physiological adaptations following substantial changes in its pattern of activity. These NMJ adaptations can affect the functional capacity of skeletal muscle in vivo.
成年哺乳动物肌肉的神经肌肉接头(NMJ)是将神经系统产生的电刺激传导至其下方肌纤维从而引发肌肉活动的部位。业已证明,在某些方面,神经肌肉接头的形态因肌纤维类型而异。还已知,虽然神经肌肉接头的结构在年轻健康的成年人中通常保持稳定,但在这个突触处会持续发生一种微妙的重塑形式。神经肌肉接头的形态和生理学已显示出会适应使用增加和减少的情况。事实上,神经肌肉接头的形态变化与神经肌肉传递的功能改变相关。肌神经突触活动增加会导致适应性变化,增强神经肌肉传递,进而提高肌肉性能。与使用增加类似,神经肌肉活动减少会导致神经肌肉接头的结构改变。然而,与活动增强时观察到的反应不同,肌神经突触的募集减少会损害神经肌肉传递和肌肉性能。因此,神经肌肉接头在其活动模式发生重大变化后会表现出解剖学和生理学上的适应性。这些神经肌肉接头的适应性变化会影响体内骨骼肌的功能能力。