{"title":"间歇回合之间的足部冷却提高重复下肢力量表现:延迟疲劳的作用。","authors":"Chih-Min Wu, Jen-Yu Ho, Wen-Yi Wang, Zong-Yan Cai","doi":"10.5114/jhk/159623","DOIUrl":null,"url":null,"abstract":"<p><p>This study aimed to investigate whether interbout foot cooling (FC) may enhance repeated lower limb power performance and the corresponding physiological responses based on interset FC, which has been demonstrated to enhance leg-press performance. In a repeated-measures crossover design, ten active men (aged 21.5 ± 1.5 years, exercising >3 times per week) performed four bouts of 10-s cycle ergometer sprints with interbout FC at 10°C water for 2.5 min or non-cooling (NC) with a 5-day interval. The results indicated that FC elicited higher total work (27.57 ± 5.66 kJ vs. 26.55 ± 5.76 kJ) and arousal scores than NC (p < 0.05). Furthermore, under the NC condition, participants decreased mean power (p < 0.05) with no alteration of vastus lateralis (VL) electromyography (EMG) activities after the second bout; whereas under the FC condition, participants maintained steady mean power accompanied by increased VL EMG activities in the last two bouts (p < 0.05). Jointly, participants had higher mean power ([3<sup>rd</sup> = 10.14 ± 1.15 vs. 9.37 ± 1.30; 4<sup>th</sup> = 9.79 ± 1.22 vs. 9.23 ± 1.27] W/kg) and VL EMG activities in the last two bouts under the FC than NC condition (p < 0.05). However, perceived exertion and the heart rate were comparable between the two conditions (p > 0.05). In conclusion, interbout FC elicited a higher arousal level and repeated lower limb power performance, which could be explained by delaying peripheral fatigue via increasing excitatory drive and recruiting additional motor units to compensate for fatigue-related responses and power decrements.</p>","PeriodicalId":16055,"journal":{"name":"Journal of Human Kinetics","volume":"86 ","pages":"107-116"},"PeriodicalIF":1.9000,"publicationDate":"2023-03-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10170544/pdf/","citationCount":"0","resultStr":"{\"title\":\"Foot Cooling between Interval Bouts Enhances Repeated Lower Limb Power Performance: The Role of Delaying Fatigue.\",\"authors\":\"Chih-Min Wu, Jen-Yu Ho, Wen-Yi Wang, Zong-Yan Cai\",\"doi\":\"10.5114/jhk/159623\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>This study aimed to investigate whether interbout foot cooling (FC) may enhance repeated lower limb power performance and the corresponding physiological responses based on interset FC, which has been demonstrated to enhance leg-press performance. In a repeated-measures crossover design, ten active men (aged 21.5 ± 1.5 years, exercising >3 times per week) performed four bouts of 10-s cycle ergometer sprints with interbout FC at 10°C water for 2.5 min or non-cooling (NC) with a 5-day interval. The results indicated that FC elicited higher total work (27.57 ± 5.66 kJ vs. 26.55 ± 5.76 kJ) and arousal scores than NC (p < 0.05). Furthermore, under the NC condition, participants decreased mean power (p < 0.05) with no alteration of vastus lateralis (VL) electromyography (EMG) activities after the second bout; whereas under the FC condition, participants maintained steady mean power accompanied by increased VL EMG activities in the last two bouts (p < 0.05). Jointly, participants had higher mean power ([3<sup>rd</sup> = 10.14 ± 1.15 vs. 9.37 ± 1.30; 4<sup>th</sup> = 9.79 ± 1.22 vs. 9.23 ± 1.27] W/kg) and VL EMG activities in the last two bouts under the FC than NC condition (p < 0.05). 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引用次数: 0
摘要
本研究旨在探讨间歇足部冷却(interset foot cooling, FC)是否可以增强重复下肢力量表现和相应的基于间歇足部冷却(interset FC)的生理反应,而间歇足部冷却已被证明可以增强腿部按压表现。在重复测量交叉设计中,10名活跃男性(年龄21.5±1.5岁,每周锻炼3次以上)进行了四组10秒周期的测力器冲刺,每组在10°C的水中进行2.5分钟的FC或不冷却(NC),间隔5天。结果表明,FC组总功(27.57±5.66 kJ vs. 26.55±5.76 kJ)和唤醒评分均高于NC组(p < 0.05)。此外,在NC条件下,参与者的平均功率下降(p < 0.05),但第二次训练后股外侧肌电(VL)活动没有改变;而在FC条件下,参与者在最后两回合保持稳定的平均功率,并伴有VL肌电活动的增加(p < 0.05)。同时,参与者的平均功效更高([3]= 10.14±1.15 vs. 9.37±1.30;4 = 9.79±1.22 vs. 9.23±1.27]W/kg),且FC组后2回合VL肌电活性显著高于NC组(p < 0.05)。两组患者的运动强度和心率差异无统计学意义(p > 0.05)。综上所述,间歇FC引起了更高的觉醒水平和重复的下肢力量表现,这可以解释为通过增加兴奋性驱动和招募额外的运动单位来补偿疲劳相关反应和力量下降来延迟周围疲劳。
Foot Cooling between Interval Bouts Enhances Repeated Lower Limb Power Performance: The Role of Delaying Fatigue.
This study aimed to investigate whether interbout foot cooling (FC) may enhance repeated lower limb power performance and the corresponding physiological responses based on interset FC, which has been demonstrated to enhance leg-press performance. In a repeated-measures crossover design, ten active men (aged 21.5 ± 1.5 years, exercising >3 times per week) performed four bouts of 10-s cycle ergometer sprints with interbout FC at 10°C water for 2.5 min or non-cooling (NC) with a 5-day interval. The results indicated that FC elicited higher total work (27.57 ± 5.66 kJ vs. 26.55 ± 5.76 kJ) and arousal scores than NC (p < 0.05). Furthermore, under the NC condition, participants decreased mean power (p < 0.05) with no alteration of vastus lateralis (VL) electromyography (EMG) activities after the second bout; whereas under the FC condition, participants maintained steady mean power accompanied by increased VL EMG activities in the last two bouts (p < 0.05). Jointly, participants had higher mean power ([3rd = 10.14 ± 1.15 vs. 9.37 ± 1.30; 4th = 9.79 ± 1.22 vs. 9.23 ± 1.27] W/kg) and VL EMG activities in the last two bouts under the FC than NC condition (p < 0.05). However, perceived exertion and the heart rate were comparable between the two conditions (p > 0.05). In conclusion, interbout FC elicited a higher arousal level and repeated lower limb power performance, which could be explained by delaying peripheral fatigue via increasing excitatory drive and recruiting additional motor units to compensate for fatigue-related responses and power decrements.
期刊介绍:
The Journal of Human Kinetics is an open access interdisciplinary periodical offering the latest research in the science of human movement studies. This comprehensive professional journal features articles and research notes encompassing such topic areas as: Kinesiology, Exercise Physiology and Nutrition, Sports Training and Behavioural Sciences in Sport, but especially considering elite and competitive aspects of sport.
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