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首页> 外文期刊>Journal of strength and conditioning research >OPTIMAL REACTIVE STRENGTH INDEX: IS IT AN ACCURATE VARIABLE TO OPTIMIZE PLYOMETRIC TRAINING EFFECTS ON MEASURES OF PHYSICAL FITNESS IN YOUNG SOCCER PLAYERS?
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OPTIMAL REACTIVE STRENGTH INDEX: IS IT AN ACCURATE VARIABLE TO OPTIMIZE PLYOMETRIC TRAINING EFFECTS ON MEASURES OF PHYSICAL FITNESS IN YOUNG SOCCER PLAYERS?

机译:最佳反应强度指数:是否是优化对年轻足球运动员身体健身措施的梭子训练效应的准确变量?

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This study aimed to compare the effects of drop-jump training using a fixed drop-box height (i.e., 30-cm [FIXED]) vs. an optimal (OPT) drop-box height (i.e., 10-cm to 40-cm: generating an OPT reactive strength index [RSI]) in youth soccer players' physical fitness. Athletes were randomly allocated to a control group (n = 24; age = 13.7 years), a fixed drop-box height group (FIXED, n = 25; age = 13.9 years), or an OPT drop-box height group (OPT, n = 24; age = 13.1 years). Before and after 7 weeks of training, tests for the assessment of jumping (countermovement jump [CMJ], 5 multiple bounds), speed (20-m sprint time), change of direction ability (CODA [Illinois test]), strength {RSI and 5 maximal squat repetition test (5 repetition maximum [RM])}, endurance (2.4-km time trial), and kicking ability (maximal kicking distance) were undertaken. Analyses revealed main effects of time for all dependent variables (p < 0.001, d = 0.24-0.72), except for 20-m sprint time. Analyses also revealed group 3 time interactions for CMJ (p, 0.001, d = 0.51), depth jump (DJ) (p < 0.001, d = 0.30), 20-m sprint time (p < 0.001, d = 0.25), CODA (p < 0.001, d = 0.22), and 5RM (p < 0.01, d = 0.16). Post hoc analyses revealed increases for the FIXED group (CMJ: 7.4%, d = 0.36; DJ: 19.2%, d = 0.49; CODA: 23.1%, d = 20.21; 5RM: 10.5%, d = 0.32) and the OPT group (CMJ: 16.7%, d = 0.76; DJ: 36.1%, d = 0.79; CODA: 24.4%, d = 20.34; 5RM: 18.1%, d = 0.47). Post hoc analyses also revealed increases for the OPT group in 20-m sprint time (23.7%, d = 0.27). Therefore, to maximize the effects of plyometric training, an OPT approach is recommended. However, using adequate fixed drop-box heights may provide a rational and practical alternative.
机译:本研究旨在使用固定的滴箱高度进行比较滴跳训练的影响(即30cm [固定])与最佳(OPT)滴箱高度(即10厘米至40厘米:在青年足球运动员身体健康中产生opti强度指数[RSI])。运动员随机分配给对照组(n = 24岁;年龄= 13.7岁),一个固定的丢包高度组(固定,n = 25;年龄= 13.9岁),或者选择opt滴箱高度组(选择, n = 24;年龄= 13.1岁)。在7周之前和之后的训练,测试跳跃评估(对策跳跃[CMJ],5个多个界限),速度(20米冲刺时间),方向能力的变化(Coda [伊利诺伊州测试]),强度{RSI和5最大蹲下重复试验(5重复最大[RM])},承受耐力(2.4熟时间的试验),并进行踢脚(最大踢距离)。分析显示,除20米的冲刺时间外,分析显示了所有依赖变量的主要影响(P <0.001,D = 0.24-0.72)。分析还揭示了CMJ的3次相互作用(P,0.001,D = 0.51),深度跳跃(DJ)(P <0.001,D = 0.30),20米冲刺时间(P <0.001,D = 0.25),CODA (P <0.001,D = 0.22)和5RM(P <0.01,D = 0.16)。后HOC分析显示固定组的增加(CMJ:7.4%,D = 0.36; DJ:19.2%,D = 0.49; CODA:23.1%,D = 20.21; 5RM:10.5%,D = 0.32)和OPT组(CMJ:16.7%,D = 0.76; DJ:36.1%,D = 0.79; CODA:24.4%,D = 20.34; 5RM:18.1%,D = 0.47)。后HOC分析还显示出在20-M次冲刺时间(23.7%,D = 0.27)中的opt组增加。因此,为了最大限度地提高尺寸训练的影响,建议使用OPT方法。然而,使用足够的固定滴箱高度可以提供合理和实用的替代方案。

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