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Human thrust in aquatic environment: The effect of post-activation potentiation on flutter kick

机译:水生环境中的人推力:激活后增强对扑打的影响

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摘要

class="kwd-title">Keywords: Human locomotion, Swimming, Post-activation potentiation, Kinetics, Kinematics, Propulsion class="head no_bottom_margin" id="ab015title">AbstractHerein, we analyse by experimental techniques the human kicking thrust and measure the effect of a warm-up routine that includes post-activation potentiation (PAP) sets on front-crawl flutter kick thrust, kinematics, and performance. Sixteen male competitive swimmers with 22.13 ± 3.84 years of age were randomly assigned in a crossover manner to undergo a standard warm-up (non-PAP; control condition) and a warm-up that included PAP sets (PAP; experimental condition) consisting in 2 × 5 repetitions of unloaded countermovement jump. Participants performed a 25 m all-out trial in front-crawl with only flutter kicks eight min after each warm-up. Kinetics (i.e., peak thrust, mean thrust, and thrust-time integral) and kinematics (i.e., speed, speed fluctuation and kicking frequency) were experimentally collected by an in-house customized system composed of differential pressure sensors, speedo-meter, and underwater camera. Peak thrust (P = 0.02, d = 0.66) and mean thrust (P = 0.10, d = 0.40) were increased by 15% in PAP compared to non-PAP. Large and significant differences were noted in speed (P = 0.01, d = 0.54) and speed fluctuation (P = 0.02, d = 0.58), which improved by 10% in PAP compared with non-PAP. In conclusion, a warm-up that includes PAP sets improves kicking thrust, kinematics and performance.
机译:<!-fig ft0-> <!-fig @ position =“ anchor” mode =文章f4-> <!-fig mode =“ anchred” f5-> <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> class =“ kwd-title”>关键字:人类运动,游泳,激活后增强,动力学,运动学,推进力 class =“ head no_bottom_margin“ id =” ab015title“>摘要此处,我们通过实验技术分析了人的踢腿推力,并测量了包括后激活电位(PAP)设置在内的热身例程对前爬网扑打踢的影响。推力,运动学和性能。以交叉方式随机分配16名22.13±3.84岁的男性竞技游泳者进行标准的热身(非PAP;对照条件)和包括以下内容的PAP组(PAP;实验条件)的热身:空载反向跳动的2××jump5次重复。参加者在前爬网中进行了25 m的全力试验,每次热身后八分钟只进行扑打。动力学(即峰值推力,平均推力和推力时间积分)和运动学(即速度,速度波动和冲击频率)通过内部定制系统进行实验性收集,该系统由差压传感器,速度计和水下相机。与非PAP相比,PAP的峰值推力(P = 0.02,d = 0.66)和平均推力(P = 0.10,d = 0.40)增加了15%。速度(P = 0.01,d = 0.54)和速度波动(P = 0.02,d = 0.58)有明显的不同,与非PAP相比,PAP改善了10%。总之,包括PAP设置在内的热身可以改善蹬腿推力,运动学和性能。

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