...
首页> 外文期刊>Journal of Applied Biomechanics >Effects of Eccentric Preloading on Concentric Vertical Jump Performance in Youth Athletes
【24h】

Effects of Eccentric Preloading on Concentric Vertical Jump Performance in Youth Athletes

机译:偏心预紧对青少年运动员同心垂直跳成绩的影响

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

This study measured peak force (PF), peak rate of force development (PRFD), peak power (PP), concentric impulse, and eccentric impulse during static jump (SJ), countermovement jump (CMJ), and drop jump (DJ) in youth athletes to examine changes in vertical jump power with progressively greater eccentric preloading in relation to age, maturity, and muscle mass. Twenty-one males ranging from 6 to 16 years old performed the following vertical jumps in a random order: SJ, CMJ, and DJ from drop heights of 20, 30, and 40 cm (DJ20, DJ30, and DJ40, respectively). Measurements included PF, PRFD, PP, eccentric impulse, and concentric impulse for each vertical jump condition. Maturity offset was calculated, while ultrasound images quantified thigh muscle cross-sectional area (CSA). PF and PRFD increased from CMJ to DJ20. PP increased from SJ to CMJ. Concentric impulse remained unchanged, but eccentric impulse increased systematically from across jumps. The change in PP from SJ to CMJ was correlated with age, height, weight, maturity offset, and CSA. The CMJ resulted in the greatest concentric PP with the least amount of eccentric preloading. The inability of young athletes to translate the energy absorbed during the eccentric phase of the stretch-shortening cycle of DJs may be influenced by growth and development.
机译:这项研究测量了静态跳跃(SJ),反向运动跳跃(CMJ)和跌落跳跃(DJ)期间的峰值力(PF),峰值力发展率​​(PRFD),峰值功率(PP),同心脉冲和偏心脉冲。青年运动员研究随着年龄,成熟度和肌肉质量而逐渐增加的偏心预紧力引起的垂直跳跃力量的变化。 21位年龄在6至16岁之间的雄性以随机顺序执行以下垂直跳动:从跌落高度20、30和40厘米(分别为DJ20,DJ30和DJ40)进行SJ,CMJ和DJ。对于每种垂直跳跃条件,测量包括PF,PRFD,PP,偏心脉冲和同心脉冲。计算成熟度偏移,同时超声图像量化大腿肌肉横截面积(CSA)。 PF和PRFD从CMJ增加到DJ20。 PP从SJ增加到CMJ。同心冲动保持不变,但偏心冲动在跨跳时有系统地增加。从SJ到CMJ的PP变化与年龄,身高,体重,成熟度偏移和CSA相关。 CMJ导致最大的同心PP和最小的偏心预紧力。年轻运动员无法转换DJ伸展缩短周期的偏心阶段吸收的能量可能会受到生长和发育的影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号