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优秀男性运动员在纵跳过程中跳跃高度与下肢关节动力学和运动学之间的关系。

Relationship between jump height and lower limb joint kinetics and kinematics during countermovement jump in elite male athletes.

作者信息

Shinchi Kotaro, Yamashita Daichi, Yamagishi Takaki, Aoki Kazuhiro, Miyamoto Naokazu

机构信息

Graduate School of Health and Sports Science, Juntendo University, Chiba, Japan.

Department of Sport Medicine and Research, Japan Institute of Sports Sciences, Tokyo, Japan.

出版信息

Sports Biomech. 2024 Dec;23(12):3454-3465. doi: 10.1080/14763141.2024.2351212. Epub 2024 May 14.

Abstract

This study aims to identify the relationship between jump height and the kinetic and kinematic parameters of the hip, knee, and ankle joints during countermovement jump (CMJ) in elite male athletes. Sixty-six elite male athletes from various sports (strength and power, winter downhill, combat, ball game, and aquatic) performed maximal effort CMJs with hands and arms crossed against their chests on force platforms. Jumping motion in the sagittal plane was recorded using video analysis and the peak torque, power, and angular velocity of the right hip, knee, and ankle joints were calculated during the propulsive phase. Correlations between the CMJ height and kinetic and kinematic parameters were investigated using Pearson's product-moment coefficient (r) and Spearman's rank correlation coefficient (ρ). CMJ height was highly correlated with peak hip power (ρ = 0.686,  < 0.001) and peak knee angular velocity ( = 0.517,  < 0.001), and moderately correlated with peak hip angular velocity ( = 0.438,  < 0.001) and peak hip torque ( = 0.398,  = 0.001). These results indicate that notable hip torque and power can contribute to increased angular velocity in both the knee and hip joints, ultimately increasing the CMJ height in elite male athletes.

摘要

本研究旨在确定精英男性运动员在反向纵跳(CMJ)过程中,纵跳高度与髋、膝、踝关节的动力学和运动学参数之间的关系。66名来自不同运动项目(力量与爆发力、冬季速降、格斗、球类和水上运动)的精英男性运动员在测力平台上进行最大努力的CMJ动作,双手交叉抱于胸前。利用视频分析记录矢状面内的跳跃动作,并计算推进阶段右髋、膝、踝关节的峰值扭矩、功率和角速度。使用皮尔逊积矩相关系数(r)和斯皮尔曼等级相关系数(ρ)研究CMJ高度与动力学和运动学参数之间的相关性。CMJ高度与髋部峰值功率(ρ = 0.686,< 0.001)和膝部峰值角速度( = 0.517,< 0.001)高度相关,与髋部峰值角速度( = 0.438,< 0.001)和髋部峰值扭矩( = 0.398, = 0.001)中度相关。这些结果表明,显著的髋部扭矩和功率有助于增加膝关节和髋关节的角速度,最终提高精英男性运动员的CMJ高度。

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