篮球和网球运动员双侧反向运动跳跃能力不足及其与变向表现的关系。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Applied Bio Materials Pub Date : 2024-10-01 Epub Date: 2021-06-16 DOI:10.1080/14763141.2021.1942965
Žiga Kozinc, Nejc Šarabon
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引用次数: 0

摘要

本研究的目的是评估反向运动跳跃中的双侧缺陷(BLD)与变向(CoD)表现之间的关联。因此,165 名年轻篮球运动员(60 名女性)和 95 名年轻网球运动员(39 名女性)分别完成了两种不同的变向运动任务(90° 和 180°转身)以及双侧和单侧反向运动跳跃。BLD是根据跳跃高度、峰值功率和几个特定阶段的力脉冲(FI)计算得出的。就男性运动员而言,CoD 成绩与 BLD 之间存在几种具有统计学意义的小到中等程度的关联(r = 0.21-0.52)。虽然推进阶段 FI 中的 BLD 似乎与 CoD 成绩的关联最为一致,但所有关联都很微弱(r = 0.21-0.28(篮球),0.28-0.36(网球))。在男子网球运动员中,总正向(制动和推进阶段)FI 中的 BLD 与 CoD 成绩之间的关系适中(r = 0.45-0.52)。女性运动员的相关性则更小,几乎完全没有统计学意义。尽管是间接的,但我们的研究结果表明,基于单侧练习的阻力训练有助于提高CoD表现。必须强调的是,要直接证实这一假设,还需要进一步的训练研究。
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Bilateral deficit in countermovement jump and its association with change of direction performance in basketball and tennis players.

The purpose of this study was to assess the association between bilateral deficit (BLD) in countermovement jump and change of direction (CoD) performance. Therefore, 165 young basketball players (60 females) and 95 young tennis players (39 females) performed two different CoD tasks (90° and 180° turns) and bilateral and unilateral countermovement jumps. BLD was calculated based on jump height, peak power and several phase-specific force impulses (FI). For male athletes, several statistically significant small to moderate associations were found between the CoD performance and BLD (r = 0.21-0.52). While the BLD in the propulsive phase FI seems to be most consistently associated with CoD performance, all associations were weak (r = 0.21-0.28 in basketball, 0.28-0.36 in tennis). Associations between BLD in total positive (braking and propulsive phase) FI and CoD performance were moderate (r = 0.45-0.52) in male tennis players. For female athletes, the associations were even smaller and almost exclusively statistically non-significant. Although indirectly, our results imply that resistance training based on unilateral exercises could be useful to improve CoD performance. It has to be stressed that further training studies are needed to directly confirm this assumption.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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