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Postactivation Potentiation of the Plantar Flexors Does Not Directly Translate to Jump Performance in Female Elite Young Soccer Players

机译:足底屈肌的激活后增强不会直接转化为女性优秀青年足球运动员的跳跃表现

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摘要

High-intensity muscle actions have the potential to temporarily improve muscle contractile properties (i.e., postactivation potentiation, PAP) thereby inducing acute performance enhancements. There is evidence that balance training can improve performance during strength exercises. Taking these findings together, the purpose of this study was to examine the acute effects of a combined balance and strength (B+S) exercise vs. a strength only (S) exercise on twitch contractile properties, maximum voluntary strength, and jump performance in young athletes. Female elite young soccer players (N = 12) aged 14–15 years conducted three experimental conditions in randomized order: S included 3 sets of 8–10 dynamic leg extensions at 80% of the 1-repetition maximum, B+S consisted of 3 sets of 40 s double-leg stances on a balance board prior to leg extensions (same as S), and a resting control period. Before and 7 min after exercise, participants were tested for their electrically-evoked isometric twitches (i.e., twitch peak torque, twitch rate of torque development) and maximal voluntary contraction (MVC) torque of the plantar flexor muscles. Additionally, countermovement (CMJ) and drop jump (DJ) performances (i.e., CMJ/DJ height, DJ ground contact time) were assessed. Significant effects of condition on twitch contractile properties (p < 0.05, d = 1.1) and jump performance outputs (p < 0.05, 1.1 ≤ d ≤ 1.2) were found. Post-hoc tests revealed that S compared to control produced larger PAP for twitch peak torques by trend (p = 0.07, d = 1.8, 33 vs. 21%) and significantly larger PAP for twitch rate of torque development (p < 0.05, d = 2.4, 55 vs. 43%). Following B+S compared to control, significant improvements in CMJ height (p < 0.01, d = 1.9, 3%) and DJ contact time were found (p < 0.01, d = 2.0, 10%). This study revealed protocol-specific acute performance improvements. While S resulted in significant increases in twitch contractile properties, B+S produced significant enhancements in jump performance. It is concluded that PAP effects in the plantar flexors may not directly translate to improved jump performance in female elite young soccer players. Therefore, the observed gains in jump performance following B+S are most likely related to neuromuscular changes (e.g., intramuscular coordination) rather than improved contractile properties.
机译:高强度的肌肉动作有可能暂时改善肌肉的收缩特性(即,激活后增强PAP),从而引起急性表现的增强。有证据表明,平衡训练可以在力量锻炼中提高表现。综合这些发现,本研究的目的是检验平衡与力量(B + S)组合运动与仅力量(S)组合运动对抽搐者收缩特性,最大自愿力量和跳跃性能的急性影响。年轻的运动员。 14至15岁的女性青年精英足球运动员(N = 12)以随机顺序进行了三种实验条件:S包括3组8-10次动态腿部伸展,其重复次数为1次重复次数的80%,B + S包括3次在腿伸展之前(与S相同)在平衡板上设置40 s的双腿姿势,以及休息控制期。运动前和运动后7分钟,对参与者进行了电诱发的等距抽搐测试(即抽搐峰值扭矩,扭矩发展的抽搐速率)和the屈肌的最大自愿收缩(MVC)扭矩。此外,还评估了反向运动(CMJ)和掉落跳跃(DJ)的性能(即CMJ / DJ高度,DJ地面接触时间)。发现条件对抽搐收缩特性(p <0.05,d = 1.1)和跳跃性能输出(p <0.05,1.1≤d≤1.2)有显着影响。事后测试显示,与趋势相比,S曲线对抽动峰值扭矩产生更大的PAP(p = 0.07,d = 1.8,33 vs. 21%),而对抽动力矩产生的抽动速率,PAP明显更大(p <0.05,d = 2.4,55对43%)。与对照组相比,在进行B + S后,发现CMJ高度(p <0.01,d = 1.9,3%)和DJ接触时间(p <0.01,d = 2.0,10%)有了显着改善。这项研究揭示了协议特定的急性表现改善。尽管S导致抽搐收缩特性显着增加,但B + S却使跳跃性能显着增强。结论是,足底屈肌的PAP效应可能不会直接转化为女性精英年轻足球运动员的跳跃性能改善。因此,观察到的B + S后跳跃性能的提高很可能与神经肌肉的变化(例如,肌肉内的协调性)有关,而不是与改善的收缩特性有关。

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