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高强度无氧运动后的亚致死性肌纤维损伤

Sublethal muscle fibre injuries after high-tension anaerobic exercise.

作者信息

Fridén J, Seger J, Ekblom B

机构信息

Department of Anatomy, University of Umeå, Sweden.

出版信息

Eur J Appl Physiol Occup Physiol. 1988;57(3):360-8. doi: 10.1007/BF00635996.

Abstract

The vastus lateralis muscles of eleven male elite sprinters (17-28 years) were investigated in order to examine the impact of high tension anaerobic muscular work on muscle fibre fine structure. In an attempt to reproduce the training regimen six subjects ran 20 repetitions of 25 s on a treadmill with 2 min 35 s in between, at a speed corresponding to 86% of their personal best 200 m time. PAS-stained sections of biopsies taken approximately 2 h after training generally indicated glycogen depletion in type 1 and type 2B fibres. At the light microscopic level, no signs of inflammation or fibre rupture were observed. However, at the ultrastructural level, frequent abnormalities of the contractile material and the cytoplasmic organelles were detected. Z-band streaming, autophagic vacuoles and abnormal mitochondria were the most conspicuous observations. Control specimens from sprinters who did not perform the acute exercise routine also displayed structural deviations, although to a lesser degree. It is hypothesized that during sprint training the leg musculature is put under great mechanical and metabolic stress which causes the degenerative response reported here.

摘要

为了研究高强度无氧肌肉运动对肌肉纤维精细结构的影响,对11名男性精英短跑运动员(17 - 28岁)的股外侧肌进行了调查。为了重现训练方案,6名受试者在跑步机上以相当于其个人最佳200米成绩86%的速度进行了20次25秒的跑步,每次之间间隔2分35秒。训练后约2小时采集的活检组织经PAS染色切片显示,1型和2B型纤维普遍存在糖原耗竭。在光学显微镜水平,未观察到炎症或纤维破裂的迹象。然而,在超微结构水平,检测到收缩物质和细胞质细胞器频繁出现异常。Z带流、自噬泡和异常线粒体是最明显的观察结果。未进行急性运动常规训练的短跑运动员的对照标本也显示出结构偏差,尽管程度较轻。据推测,在短跑训练期间,腿部肌肉组织承受着巨大的机械和代谢压力,从而导致了此处报道的退行性反应。

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