...
首页> 外文期刊>European journal of applied physiology >Fatigue is specific to working muscles: No cross-over with single-leg cycling in trained cyclists
【24h】

Fatigue is specific to working muscles: No cross-over with single-leg cycling in trained cyclists

机译:疲劳特定于工作肌肉:训练有素的自行车手单腿骑行不会造成交叉

获取原文
获取原文并翻译 | 示例

摘要

Fatigue induced via a maximal isometric contraction of a single limb muscle group can evoke a "cross-over" of fatigue that reduces voluntary muscle activation and maximum isometric force in the rested contralateral homologous muscle group. We asked whether a cross-over of fatigue also occurs when fatigue is induced via high-intensity endurance exercise involving a substantial muscle mass. Specifically, we used high-intensity single-leg cycling to induce fatigue and evaluated associated effects on maximum cycling power (P max) in the fatigued ipsilateral leg (FATleg) as well as the rested contralateral leg (RESTleg). On separate days, 12 trained cyclists performed right leg P max trials before and again 30 s, 3, 5, and 10 min after a cycling time trial (TT, 10 min) performed either with their right or left leg. Fatigue was estimated by comparing exercise-induced changes in P max and maximum handgrip isometric force (F max). Mean power produced during the right and left leg TTs did not differ (203 ± 8 vs. 199 ± 8 W). Compared to pre-TT, FAT leg P max was reduced by 22 ± 3 % at 30 s post-TT and remained reduced by 9 ± 2 % at 5 min post-TT (both P 0.05). Despite considerable power loss in the FATleg, post-TT REST leg P max (596-603 W) did not differ from pre-TT values (596 ± 35 W). There were no alterations in handgrip F max (529-547 N). Our data suggest that any potential cross-over of fatigue, if present at all, was not sufficient to measurably compromise RESTleg P max in trained cyclists. These results along with the lack of changes in handgrip F max indicate that impairments in maximal voluntary neuromuscular function were specific to working muscles.
机译:通过单肢肌肉群最大等轴测收缩引起的疲劳可引起疲劳的“交叉”,从而减少了静止的对侧同源肌群中的自愿性肌肉激活和最大等轴测力。我们询问当通过涉及大量肌肉的高强度耐力运动诱发疲劳时,是否也会出现疲劳交叉现象。具体而言,我们使用高强度单腿骑行诱发疲劳,并评估了对疲劳的同侧腿(FATleg)和休息的对侧腿(RESTleg)的最大骑行能力(P max)的相关影响。在不同的日子里,有12位训练有素的骑自行车的人在进行左右脚的骑车时间试验(TT,10分钟)之前和之后30 s,3、5和10分钟再次进行了右腿P max试验。通过比较运动引起的P max和最大握力等轴测力(F max)的变化来估计疲劳。左右腿TT期间产生的平均功率没有差异(203±8 vs. 199±8 W)。与TT前相比,FAT腿的P max在TT后30 s降低了22±3%,并在TT后5 min降低了9±2%(均P <0.05)。尽管FATleg中存在相当大的功率损耗,但TT后REST腿的P max(596-603 W)与TT前的值(596±35 W)并无不同。手柄的F max(529-547 N)没有变化。我们的数据表明,即使存在疲劳,任何潜在的疲劳交叉都不足以可衡量地损害训练有素的自行车手的RESTleg P max。这些结果以及手把F max的变化缺乏表明最大自愿神经肌肉功能的损害是特定于工作肌肉的。

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