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大鼠在爬坡跑和下坡跑后骨骼肌的差异。

Differences in rat skeletal muscles after incline and decline running.

作者信息

Lynn R, Talbot J A, Morgan D L

机构信息

Department of Electrical and Computer Systems Engineering, Monash University, Clayton, Victoria 3168, Australia.

出版信息

J Appl Physiol (1985). 1998 Jul;85(1):98-104. doi: 10.1152/jappl.1998.85.1.98.

Abstract

Rats were trained for 5 days by running on either an inclined or declined treadmill. Three days later, the rats were anesthetized, and angle-torque curves were plotted for the vastus intermedius muscles. The maximum active torque was generated at significantly greater muscle lengths for muscles from decline-trained rats compared with incline-trained rats. Sixteen muscles were then fixed and acid digested, and fiber lengths and sarcomere lengths were measured. The estimated average number of sarcomeres in series was greater in muscle fibers from decline-trained animals. Fourteen other muscles underwent a test series of lengthening contractions, all from the same knee angle. Torque fell less and the optimum angle shifted less for muscles from decline-trained animals, showing that the decline-trained muscles were more resistant to changes in mechanical parameters that indicate damage. These results support but do not prove the proposal that the lesser damage from a series of eccentric contractions seen in muscles trained by prior eccentric contractions is due to a greater number of sarcomeres in series.

摘要

大鼠在倾斜或下坡跑步机上跑步训练5天。三天后,将大鼠麻醉,并绘制股中间肌的角度-扭矩曲线。与上坡训练的大鼠相比,下坡训练的大鼠肌肉在明显更长的肌肉长度时产生最大主动扭矩。然后固定16块肌肉并进行酸消化,测量纤维长度和肌节长度。下坡训练动物的肌纤维中估计串联肌节的平均数量更多。另外14块肌肉进行了一系列相同膝关节角度的延长收缩测试。下坡训练动物的肌肉扭矩下降较少,最佳角度变化较小,表明下坡训练的肌肉对指示损伤的力学参数变化更具抵抗力。这些结果支持但未证明以下观点:先前进行过离心收缩训练的肌肉在一系列离心收缩中损伤较小是由于串联肌节数量更多。

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