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首页> 外文期刊>American Journal of Physiology >Atrophy, but not necrosis, in rabbit skeletal muscle denervated for periods up to one year.
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Atrophy, but not necrosis, in rabbit skeletal muscle denervated for periods up to one year.

机译:兔骨骼肌的神经萎缩(而非坏死)长达一年。

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摘要

Our understanding of the effects of long-term denervation on skeletal muscle is heavily influenced by an extensive literature based on the rat. We have studied physiological and morphological changes in an alternative model, the rabbit. In adult rabbits, tibialis anterior muscles were denervated unilaterally by selective section of motor branches of the common peroneal nerve and examined after 10, 36, or 51 wk. Denervation reduced muscle mass and cross-sectional area by 50-60% and tetanic force by 75%, with no apparent reduction in specific force (force per cross-sectional area of muscle fibers). The loss of mass was associated with atrophy of fast fibers and an increase in fibrous and adipose connective tissue; the diameter of slow fibers was preserved. Within fibers, electron microscopy revealed signs of ultrastructural disorganization of sarcomeres and tubular systems. This, rather than the observed transformation of fiber type from IIx to IIa, was probably responsible for the slow contractile speedof the muscles. The muscle groups denervated for 10, 36, or 51 wk showed no significant differences. At no stage was there any evidence of necrosis or regeneration, and the total number of fibers remained constant. These changes are in marked contrast to the necrotic degeneration and progressive decline in mass and force that have previously been found in long-term denervated rat muscles. The rabbit may be a better choice for a model of the effects of denervation in humans, at least up to 1 yr after lesion.
机译:我们对长期神经支配对骨骼肌的影响的理解受到大量基于大鼠的文献的影响。我们已经研究了另一种模型兔子的生理和形态变化。在成年兔子中,通过选择性腓总神经运动分支选择性切除胫骨前肌的神经,并在10、36或51周后进行检查。去神经使肌肉质量和横截面积减少了50-60%,而强直力量减少了75%,比力没有明显降低(肌纤维每横截面积的力)。肿块的丢失与快纤维的萎缩以及纤维和脂肪结缔组织的增加有关。慢纤维的直径得以保留。在纤维内,电子显微镜显示出肉瘤和肾小管系统超微结构紊乱的迹象。这可能不是造成肌肉类型从IIx转变为IIa的原因,可能是造成肌肉缓慢收缩的原因。分别在10、36或51周失神经的肌肉群无明显差异。在任何阶段都没有任何坏死或再生的迹象,并且纤维的总数保持恒定。这些变化与长期失神经的大鼠肌肉中坏死性变性和质量和力量的逐步下降形成鲜明对比。至少在病变后一年内,兔子可能是神经去神经作用模型的更好选择。

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