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Increase in rate of force development with skin cooling during isometric knee extension

机译:等距膝盖伸展过程中皮肤冷却增加力量发展的速度

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Rate of force development (RFD) plays an important role when performing rapid and forceful movements. Cold-induced afferent input with transient skin cooling (SC) can modulate neural drive. However, the relationship between RFD and SC is unknown. The purpose of this study was to investigate whether SC increases RFD during isometric knee extension. Fifteen young healthy men (25 +/- 8 yrs old) contracted their quadriceps muscle as fast and forcefully as possible with or without SC. Skin cooling was administered to the front of the thigh. Torque and electromyographic activity were measured simultaneously. Peak torque was not affected by SC. Skin cooling induced a significant increase in RFD at the phase 0-30 and 0-50 ms. The root mean square of the electromyography of vastus medialis, rectus femoris and vastus lateralis at the phases 0-30-50-100 ms increased significantly or tended to increase with SC. These results suggest that SC may increase neural drive and improve RFD in the very early phases of contraction. (C) 2014 Elsevier Ltd. All rights reserved.
机译:进行快速有力的运动时,力量发展速度(RFD)发挥着重要作用。具有短暂皮肤冷却(SC)的冷诱导传入输入可以调节神经驱动。但是,RFD和SC之间的关系是未知的。这项研究的目的是调查在等距膝盖伸展过程中SC是否增加RFD。在有或没有SC的情况下,有15名年轻的健康男性(25 +/- 8岁)尽可能快而有力地收缩了股四头肌。大腿前部进行皮肤冷却。同时测量扭矩和肌电活动。峰值扭矩不受SC影响。皮肤冷却在0-30和0-50 ms阶段导致RFD显着增加。在0-30-50-100 ms时,股内侧肌,股直肌和股外侧肌的肌电图的均方根随SC显着增加或趋于增加。这些结果表明,SC可能在收缩的早期阶段增加神经驱动力并改善RFD。 (C)2014 Elsevier Ltd.保留所有权利。

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