大鼠腓肠肌内侧疲劳和疲劳恢复的年龄相关性影响。

A de Haan, M A Lodder, A J Sargeant
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引用次数: 15

摘要

力-速度、功率-速度和卸载缩短数据来自成熟雄性大鼠(约125日龄)完整循环的腓肠肌内侧肌腱复合体(60 Hz刺激)。测量在长时间(15秒)收缩结束(疲劳肌肉)或短时间(1秒)收缩时进行,在新鲜状态(新鲜肌肉)或在长时间收缩后恢复15分钟的肌肉中进行。与新鲜状态疲劳相比,等距力降低了57%,最大缩短速度降低了约40%,最大功率输出降低了81%。这些减少与先前在年轻大鼠(40天大鼠)中获得的数据相似。然而,在长时间收缩后恢复15分钟的肌肉速度数据显示,成熟大鼠的肌肉速度下降幅度更大。这两个年龄组之间的差异以及等长力时间曲线初始部分变化的差异表明,这些混合肌肉的快速疲劳纤维种群的反应与年龄有关。在另一系列实验中,研究人员在一组年轻的大鼠身上研究了疲劳恢复的潜在机制。疲劳诱发5次长时间(15秒)收缩(每次间隔5分钟)。通过短时间收缩监测等长力和功率输出的恢复,这表明恢复的平台,但60分钟后绝对值仍然降低(分别为疲劳前值的85%和71%)。磷酸肌酸浓度恢复迅速,而ATP浓度在恢复1 h后仍明显降低。肌苷-5′-单磷酸腺苷(IMP)和乳酸浓度恢复的时间过程与力和功率输出的时间过程相似。因此,IMP和/或乳酸生成的年龄依赖性差异可能在疲劳和疲劳恢复中发挥作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Age-related effects of fatigue and recovery from fatigue in rat medial gastrocnemius muscle.

Force-velocity, power-velocity and unloaded shortening data were obtained from in situ medial gastrocnemius muscle-tendon complexes (stimulated at 60 Hz) with intact circulation of mature male rats (approximately 125 days old). Measurements were carried out at the end of a long (15 s) contraction (fatigued muscles) or with a short (1 s) contraction either in the fresh state (fresh muscles) or in muscles which had recovered for 15 min after a long contraction. Compared to the fresh state fatigue reduced isometric force by 57%, maximal shortening velocity by approximately 40% and maximal power output by 81%. These reductions were similar to data previously obtained with younger rats (40 days old). However, the velocity data of the muscles which had recovered for 15 min after a long contraction showed a greater reduction in the mature rats. This difference between the two age groups together with a difference in the changes in the initial parts of the isometric force time curves suggest an age-dependent response of the fast-fatigable fibre population of these mixed muscles. In a separate series of experiments the underlying mechanism of the recovery from fatigue was studied in a group of young rats. Fatigue was induced with five long (15 s) contractions (each at 5 min intervals). The recovery of isometric force and power output was monitored with short contractions which indicated a plateau of recovery but the absolute values were still reduced after 60 min (85 and 71% of prefatigue values, respectively). Phosphocreatine concentration recovered rapidly, whereas the ATP concentration was still markedly reduced after 1 h of recovery. The time courses of recovery of inosine-5'-monophosphate (IMP) and lactate concentrations resembled those of force and power output. Thus it is possible that age-dependent differences in IMP and/or lactate production may play a role in fatigue and recovery from fatigue.

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