【24h】

Adaptive changes in motor control of rhythmic movement after maximal eccentric actions

机译:最大偏心动作后节律运动的运动控制的自适应变化

获取原文
获取原文并翻译 | 示例
           

摘要

Effects of an exhaustive eccentric exercise (EE) on the motor control of maximal velocity rhythmic elbow extension/flexion movement (RM) were examined in eight male students. The exhaustive EE consisted of 100 maximal eccentric actions of the elbow flexor muscles. Movement range was 40-170 degrees in EE at an angular velocity of 2 rad s(-1). A directive scaled RM of 60 degrees with visual feedback was performed in a sitting position, with the right forearm fixed to the lever arm in horizontal plane above protractor. Surface electromyographic activity (EMG) was recorded from the biceps brachii (BB) and triceps brachii (TB) muscles. Maximal isokinetic eccentric and concentric tests and RM test were conducted before, after, 0.5 h, 2 days and 7 days after the exercise. Dynamic force production was deteriorated after EE (P < .001), and did not recover fully within 7 days. The delayed recovery phase was characterized by delayed onset of Muscle soreness (DOMS) and elevated serum creatine kinase (CK) activity. The RM test revealed a delayed increase of the fatigued BB muscle EMG activity, but the maximal RM velocity could be preserved. The present results emphasize the capacity of the neuromuscular system to compensate for prolonged eccentric-induced contractile failure by optimizing antagonistic muscles coordination in a demanding rhythmic task. The underlying compensatory mechanisms could be related to increased sensitization of small diameter muscle nerve endings.
机译:在八名男学生中检查了一次详尽的离心运动(EE)对最大速度节律性肘伸展/屈曲运动(RM)的运动控制的影响。详尽的EE包括肘部屈肌的100次最大离心动作。 EE的运动范围为40-170度,角速度为2 rad s(-1)。在坐姿下执行带有视觉反馈的60度定向刻度RM,右前臂在量角器上方的水平面内固定到杠杆臂。从肱二头肌(BB)和肱三头肌(TB)肌肉记录表面肌电图活动(EMG)。运动前,运动后,运动后0.5 h,2天和7天进行最大等速离心和同心试验以及RM试验。 EE后动态力产生恶化(P <.001),并且在7天内没有完全恢复。恢复期延迟的特点是肌肉酸痛(DOMS)的发作延迟和血清肌酸激酶(CK)活性升高。 RM测试显示疲劳的BB肌肌电活动延迟增加,但可以保留最大的RM速度。目前的结果强调了神经肌肉系统通过在有节律的任务中优化拮抗肌肉的协调能力来补偿偏心诱发的长期收缩衰竭的能力。潜在的补偿机制可能与小直径肌肉神经末梢的敏感性增加有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号