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周期性运动引起的骨骼肌肌纤维转变依赖于基础纤维类型分布。

Cycling exercise-induced myofiber transitions in skeletal muscle depend on basal fiber type distribution.

机构信息

Department for Molecular and Cellular Sports Medicine, Institute of Cardiology and Sports Medicine, German Sport University Cologne, Am Sportpark Müngersdorf 6, 50933, Cologne, Germany.

出版信息

Eur J Appl Physiol. 2012 Jul;112(7):2393-402. doi: 10.1007/s00421-011-2209-4. Epub 2011 Oct 29.

Abstract

The link between specific changes in myofiber type proportions and modulation of training in human skeletal muscle has yet to be unraveled. We investigated whether a defined increase in training volume induces a corresponding change of myofiber shifting in human skeletal muscle with distinct basal myofiber distribution. Twenty-one male cyclists (Age 26 ± 4 years) with different performance levels were exposed to increased cycling training volume with reduced power output for 3 months. Biopsies were taken from vastus lateralis muscle PRE-POST and the proportions of type I, IIa, IIx and IIc myofibers were determined. Total training time did not correlate to the degree of fiber type shifting of any type. In the entire sample of subjects, the proportion of type I myofibers tended to increase (P = 0.14) while IIa fibers decreased significantly (P < 0.05). Subgroups of subjects possessing higher (HPS) and lower proportions (LPS) of type I myofibers at baseline showed a distinct pattern in changing myofiber distribution. Subjects in HPS offered no change in myofiber proportions of any type. In contrast, subjects in LPS showed marked increases in type I (P = 0.06) and a significant reduction in IIa myofibers (P = 0.01). An inverse correlation between baseline proportion of type I and IIa myofibers and its change was observed. We conclude that individual myofiber composition constitutes a modulating factor for exercise-induced changes in its distribution. This might be influenced by altered demands of myofiber recruitment in relation to the intensity of muscle contraction but also by its relative abundance in contracting muscle.

摘要

特定肌纤维类型比例变化与人类骨骼肌训练调节之间的联系尚未被揭示。我们研究了在具有不同基础肌纤维分布的人类骨骼肌中,增加训练量是否会引起肌纤维转移的相应变化。21 名男性自行车运动员(年龄 26 ± 4 岁),具有不同的运动水平,接受了 3 个月的增加训练量但减少功率输出的训练。在训练前(PRE)和训练后(POST)从股外侧肌取活检,并确定 I 型、IIa 型、IIx 型和 IIc 型肌纤维的比例。总训练时间与任何类型的纤维类型转移程度都没有相关性。在所有受试者的样本中,I 型肌纤维的比例趋于增加(P = 0.14),而 IIa 纤维显著减少(P < 0.05)。在基线时具有较高(HPS)和较低(LPS)I 型肌纤维比例的受试者亚组在改变肌纤维分布方面表现出明显的模式。HPS 组的受试者任何类型的肌纤维比例都没有变化。相比之下,LPS 组的受试者 I 型肌纤维显著增加(P = 0.06),IIa 肌纤维显著减少(P = 0.01)。观察到基线 I 型和 IIa 型肌纤维比例与其变化之间存在反向相关性。我们得出结论,个体肌纤维组成是运动引起的肌纤维分布变化的调节因素。这可能受到肌纤维募集需求与肌肉收缩强度的变化的影响,也可能受到收缩肌肉中相对丰度的影响。

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