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A study of glycogen depletion and the fibre-type composition of cat skeleto-fusimotor units.

机译:糖原耗竭和猫骨骼融合运动单位纤维类型组成的研究。

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摘要

1. We have used the glycogen-depletion technique, combined with myofibrillar ATPase (mATPase) staining for muscle fibre type, to study the fibre-type composition of four skeleto-fusimotor (beta) units in cat peroneus tertius, namely, one beta dynamic (beta d) unit and three beta static (beta s) units. 2. Depletion of glycogen was observed in serial cross-sections of thirty-four beta-unit extrafusal muscle fibres of various types traced from origin to insertion. No fibre was depleted of glycogen throughout its length; depletion was restricted to a number of zones, usually about five. Oxidative (type I) and oxidative-glycolytic (type IIA) fibres were depleted for a significantly greater proportion of their total length than glycolytic IIB fibres. 3. The fibre-type composition of the beta d unit was determined by tracing its fibres from end to end. The muscle unit consisted of one intrafusal bag1 fibre and ninety-three extrafusal muscle fibres comprising seventy-six type I fibres, eleven IIC fibres, and six fibres that changed from IIC to I during the course of their length (IIC/I fibres). The extrafusal fibre-type composition was thus 81.7% I plus 18.3% IIC and IIC/I. 4. The three beta s units (beta s1, beta s2, beta s3) were all fast-contracting and fatigued rapidly. Identification of their extrafusal fibre types, made in 1 mm2 areas sampled from different parts of each unit, gave mixed compositions as follows: beta s1, IIB + 6.7% IIA; beta s2, IIB + 5.8% IIA; beta s3, IIB + 29.9% IIA. The intrafusal component of each unit included either one or two long chain fibres. 5. In a discussion of the results, the fact that the continuous stimulation of extrafusal muscle fibres does not deplete them of glycogen throughout their length is examined in relation to the work of others who have assumed that it did. With regard to the finding of mixed extrafusal fibre types in the beta units, a distinction is drawn between minimal (around 5%) and moderate mixing. It is suggested that minimal mixing may occur in any motor unit as the outcome of endplate degeneration with foreign replacement, but that moderate mixing indicates an on-going process of conversion from one fibre type to another which in the adult may prove to occur only among beta units.
机译:1.我们使用了糖原耗竭技术,结合肌原纤维ATPase(mATPase)染色来研究肌肉纤维类型,以研究猫腓肠肌中四个骨架融合运动(beta)单元的纤维类型组成,即一个beta动态(beta d)单位和三个beta静态(beta s)单位。 2.在从起源到插入的各种类型的34种β-单元融合神经纤维的连续横截面中观察到糖原的消耗。没有纤维在其整个长度上都耗尽糖原。耗尽被限制在多个区域,通常大约五个。氧化性(I型)和氧化性糖酵解(IIA型)纤维的总长度比糖酵解性IIB纤维的损耗大得多。 3.通过从一端到另一端追踪其纤维来确定βd单元的纤维类型组成。肌肉单元由1根融合肌袋内纤维和93根融合肌纤维组成,包括76根I型纤维,11根IIC纤维和6根在其长度变化过程中从IIC变为I的纤维(IIC / I纤维)。因此,融合神经外纤维型成分为81.7%I加上18.3%IIC和IIC / I。 4.三个beta s单元(beta s1,beta s2,beta s3)都收缩很快并且很快疲劳。在每个单元不同部分的1平方毫米区域中对它们的融合纤维的类型进行鉴定,得出如下混合成分:βs1,IIB + 6.7%IIA; beta s2,IIB + 5.8%IIA; beta s3,IIB + 29.9%IIA。每个单元的融合内成分包括一根或两根长链纤维。 5.在对结果的讨论中,与其他假设已经做过的工作有关,研究了持续刺激股骨外肌纤维并没有耗尽其糖原的事实。关于在β单元中发现的混合性融合纤维的类型,在最小混合量(约5%)和中等混合量之间有区别。建议将任何运动单元中的最小混合量作为端板退化和外来替换的结果,但中等混合量表示正在进行的从一种纤维类型到另一种纤维类型的转换过程,在成年人中可能仅发生在其中Beta单元。

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