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Force enhancement and mechanisms of contraction in skeletal muscle

机译:骨骼肌的力量增强和收缩机制

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This paper presents a study on force enhancement and mechanisms of contraction in skeletal muscle. Force enhancement was evaluated in four conceptually different experimental preparations: in vivo human muscles activated through voluntary contractions; isolated, in situ muscle preparations (typically the cat soleus), isolated single fibres (typically from the lumbrical muscles of the frog), and isolated single myofibrils (from the rabbit psoas). Results show that force enhancement is caused by an active and passive component. The passive component appears to be associated with sarcomere length and have been speculated to originate within the structural protein, titin. The active component of force enhancement appears to be related to the molecular interaction of actin and myosin, and therefore, seems to be intricately linked to the basic mechanism of contraction
机译:本文介绍了骨骼肌力量增强和收缩机制的研究。在四种概念上不同的实验准备中评估了力量的增强:通过自愿收缩激活的体内人体肌肉;分离的原位肌肉制剂(通常是猫比目鱼),分离的单纤维(通常来自青蛙的腰肌)和分离的单肌原纤维(来自兔腰大肌)。结果表明,力的增强是由主动和被动部件引起的。被动成分似乎与肌节长度有关,并且据推测起源于结构蛋白titin。增强力的活性成分似乎与肌动蛋白和肌球蛋白的分子相互作用有关,因此,似乎与收缩的基本机制错综复杂地联系在一起。

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