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Structural changes in skeletal muscles in hypokinesia and physical loading in the posthypokinetic period of recovery of rats’ organisms

机译:运动能力恢复后大鼠生物体运动不足期间骨骼肌的结构变化和运动负荷

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This article reports the study of histo-ultrastructural changes of different structural components of the direct muscle of the thigh of sexually mature male rats over a prolonged period of hypokinesia and subsequent application of physical loading of average aerobic power. Using a light optical, electron microscope (for the exposure of structural transformations of muscle components) and histochemical (for determination of activity of succinate dehydrogenase according to the Nahlas method to identify muscle fibers with different phenotypes) methods, we studied the structural manifestations of adaptation of muscle fibres under prolonged (240 day) hypokinesia and 15–30 episodes of physical loading of average aerobic power in the posthypokinetic period among 55 sexually mature rats. Under prolonged hypokinesis we primarily observed changes in the intramuscular network and morphometric changes in the blood vessels. These data closely correlate with the progression of changes of the subcellular components responsible for energetic and flexible balance of muscle fibres. We found that fast oxygen-glycolytic muscle fibers and their peripheral nervous apparatus are the most sensitive to prolonged hypokinesia. As a result of application of physical loading of average aerobic power, reparative regeneration is intensified, which substantially shortens the period of recovery of structural-functional properties of skeletal muscles in the conditions of hypokinetic disorders. Thus, in prolonged hypokinesia, changes primarily affect the sources of blood supply to skeletal muscles, with the secondary development of reverse processes in muscle fibers and peripheral nervous apparatus with certain morphometric signs.?.
机译:这篇文章报道了在性运动不足的长时间内对性成熟雄性大鼠大腿直接肌肉不同结构成分的组织超微结构变化的研究,以及随后施加平均有氧能力的物理负荷。使用光学,电子显微镜(用于暴露肌肉成分的结构转变)和组织化学(用于根据Nahlas方法确定琥珀酸脱氢酶的活性,以识别具有不同表型的肌纤维)方法,我们研究了适应性的结构表现55名性成熟大鼠在运动不足后,长时间(240天)运动不足和平均有氧运动负荷的15-30次运动后的肌纤维变化。在长时间的运动不足的情况下,我们主要观察到了肌内网络的变化和血管的形态变化。这些数据与负责肌肉纤维能量和柔韧性平衡的亚细胞成分变化的进展密切相关。我们发现,快速的氧气-糖酵解性肌肉纤维及其周围神经装置对长时间的运动不足最敏感。通过施加平均有氧能力的物理负荷,增强了修复再生,这显着缩短了在运动不足的情况下骨骼肌结构功能特性的恢复时间。因此,在长时间的运动不足中,变化主要影响骨骼肌的血液供应,而在肌肉纤维和周围神经装置中具有某些形态特征的逆过程的继发性发展。

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