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Eccentric Contraction-Induced Muscle Injury: Reproducible Quantitative Physiological Models to Impair Skeletal Muscle’s Capacity to Generate Force

机译:偏心收缩引起的肌肉损伤:可再现的定量生理模型削弱骨骼肌产生力量的能力

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摘要

In order to investigate the molecular and cellular mechanisms of muscle regeneration an experimental injury model is required. Advantages of eccentric contraction-induced injury are that it is a controllable, reproducible, and physiologically relevant model to cause muscle injury, with injury being defined as a loss of force generating capacity. While eccentric contractions can be incorporated into conscious animal study designs such as downhill treadmill running, electrophysiological approaches to elicit eccentric contractions and examine muscle contractility, for example before and after the injurious eccentric contractions, allows researchers to circumvent common issues in determining muscle function in a conscious animal (e.g., unwillingness to participate). Herein, we describe in vitro and in vivo methods that are reliable, repeatable, and truly maximal because the muscle contractions are evoked in a controlled, quantifiable manner independent of subject motivation. Both methods can be used to initiate eccentric contraction-induced injury and are suitable for monitoring functional muscle regeneration hours to days to weeks post-injury.
机译:为了研究肌肉再生的分子和细胞机制,需要实验性损伤模型。偏心收缩引起的损伤的优点在于,它是引起肌肉损伤的可控制的,可再现的且与生理相关的模型,其中损伤被定义为力生成能力的丧失。虽然可以将偏心收缩纳入有意识的动物研究设计中,例如下坡跑步机运行,但是电生理方法可以引发偏心收缩并检查肌肉收缩性,例如在有害的偏心收缩之前和之后,可以使研究人员规避确定骨骼肌功能的常见问题。有意识的动物(例如,不愿意参加)。本文中,我们描述了可靠,可重复且真正最大化的体外和体内方法,因为肌肉收缩是通过受控,可量化的方式引起的,而与受试者的动机无关。两种方法均可用于引发偏心收缩引起的损伤,并且适合于监测损伤后数小时至数天至数周的功能性肌肉再生。

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