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Fibre size and type adaptations to spinal isolation and cyclical passive stretch in cat hindlimb.

机译:猫后肢的纤维尺寸和类型适应于脊柱隔离和周期性被动拉伸。

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摘要

Impulse activity is known to have a strong influence in determining the characteristics that distinguish skeletal muscle fibres into types. The control of muscle proteins by the neural systems that innervate the muscles, however, is not complete (Edgerton et al. 1985, 1990). The purpose of the present study, therefore, was to determine the effects of inactivity for 6 months on the size and fibre type composition of selected cat hindlimb muscles. Inactivity was produced by isolating the lumbar region of the spinal cord, i.e. transecting the cord at T12-T13 and again at L7-.S1 and then performing a bilateral dorsal rhizotomy between the transection sites (SI). In each SI cat, one hindlimb was passively manipulated for 30 min per day through a range of motion at the ankle mimicking a step cycle. SI resulted in an atrophic response in most muscles, with predominantly slow extensors showing the largest effect. In general, the predominant fibre type, which also had the largest mean size, in each muscle atrophied the most. The mean fibre size of all fibre types were similar after SI, suggesting that there may be a minimal size for inactive intact fibres. In comparison with control animals, all muscles in the SI cats had a higher proportion of fast fibres. Further, the relative contribution of the slow fibres to the total cross-sectional area of the muscle was decreased following SI. Some slow fibres in each muscle, however, were resistant to change. These data demonstrate the extent to which size and myosin type of mammalian muscle fibres are independent of activation characteristics.
机译:已知冲动活动在确定将骨骼肌纤维分为不同类型的特征方面具有很大的影响。然而,通过神经支配肌肉的神经系统对肌肉蛋白的控制还不完全(Edgerton等,1985,1990)。因此,本研究的目的是确定6个月不活动对所选猫后肢肌肉的大小和纤维类型组成的影响。通过分离脊髓的腰部区域,即在T12-T13处再在L7-.S1处横切脊髓,然后在横切部位(SI)之间进行双侧背侧根切断术,可以产生不活动状态。在每只SI猫中,通过模仿步阶周期的脚踝的一系列运动,每天被动地操纵一只后肢30分钟。 SI导致大多数肌肉出现萎缩反应,主要是缓慢的伸肌表现出最大的作用。通常,每条肌肉中最大的萎缩类型是平均纤维最大的主要纤维类型。 SI之后,所有纤维类型的平均纤维尺寸相似,这表明无活性的完整纤维的尺寸可能最小。与对照动物相比,SI猫中的所有肌肉均具有较高比例的快速纤维。此外,继SI后,慢纤维对肌肉总横截面积的相对贡献降低。但是,每条肌肉中的一些慢纤维却不能抵抗变化。这些数据表明哺乳动物肌肉纤维的大小和肌球蛋白类型在多大程度上不依赖于激活特征。

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