1997•Journal of Applied BiomechanicsOpen access

Kinesiological Factors in Vertical Jump Performance: Differences Within individuals

Aragón Vargas, M. Melissa Gross

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Abstract

The purpose of this study was to examine the changes in both the coordination patterns of segmental actions and the dynamics of vertical jumping that accompany changes in vertical jump performance(VJP)occurring from trial to trial in single subjects. Ground reaction forces and video data were analyzed for 50 maximal vertical jumps for 8 subjects. It was possible to predictVJPfrom whole-body or even segmental kinematics and kinetics in spite of the small jump performance variability. Best whole-body models included peak and average mechanical power, propulsion time, and peak negative impulse. Best segmental models included coordination variables and a few joint torques and powers. Contrary to expectations,VJPwas lower for trials with a proximal-to-distal sequence of joint reversals.

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What this paper is about

The purpose of this study was to examine the changes in both the coordination patterns of segmental actions and the dynamics of vertical jumping that accompany changes in vertical jump performance(VJP)occurring from trial to trial in single subjects. Ground reaction forces and video data were analyzed for 50 maximal vertical jumps for 8 subjects. It was possible to predictVJPfrom whole-body or even segmental kinematics and kinetics in spite of the small jump performance variability. Best whole-body models included peak and average mechanical power, propulsion time, and peak negative impulse. Best segmental models included coordination variables and a few joint torques and powers. Contrary to expectations,VJPwas lower for trials with a proximal-to-distal sequence of joint reversals.

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Available abstract

The purpose of this study was to examine the changes in both the coordination patterns of segmental actions and the dynamics of vertical jumping that accompany changes in vertical jump performance(VJP)occurring from trial to trial in single subjects. Ground reaction forces and video data were analyzed for 50 maximal vertical jumps for 8 subjects. It was possible to predictVJPfrom whole-body or even segmental kinematics and kinetics in spite of the small jump performance variability. Best whole-body models included peak and average mechanical power, propulsion time, and peak negative impulse. Best segmental models included coordination variables and a few joint torques and powers. Contrary to expectations,VJPwas lower for trials with a proximal-to-distal sequence of joint reversals.

Key concepts: Jump, Vertical jump, Jumping, Kinematics, Impulse (physics), Ground reaction force, Mathematics, Joint (building)

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