A biomechanical analysis of common lunge tasks in badminton

Биомеханический анализ распространённых выпадов в бадминтоне
Gregor Kuntze, Neil J. Mansfield, William I. Sellers
2010-01-01

badminton lungesbiomechanical analysisground reaction forcesinverse dynamicslower limb joint kinetics
The lunge is regularly used in badminton and is recognized for the high physical demands it places on the lower limbs. Despite its common occurrence, little information is available on the biomechanics of lunging in the singles game. A video-based pilot study confirmed the relatively high frequency of lunging, approximately 15% of all movements, in competitive singles games. The biomechanics and performance characteristics of three badminton-specific lunge tasks (kick, step-in, and hop lunge) were investigated in the laboratory with nine experienced male badminton players. Ground reaction forces and kinematic data were collected and lower limb joint kinetics calculated using an inverse dynamics approach. The step-in lunge was characterized by significantly lower mean horizontal reaction force at drive-off and lower mean peak hip joint power than the kick lunge. The hop lunge resulted in significantly larger mean reaction forces during loading and drive-off phases, as well as significantly larger mean peak ankle joint moments and knee and ankle joint powers than the kick or step-in lunges. These findings indicate that, within the setting of this investigation, the step-in lunge may be beneficial for reducing the muscular demands of lunge recovery and that the hop lunge allows for higher positive power output, thereby presenting an efficient lunging method.
1
Among three badminton-specific lunge tasks, the step-in lunge produced lower mean horizontal drive-off reaction force than the kick lunge.
2
Lunges comprised approximately 15% of all movements in competitive badminton singles games, confirming their frequent use.
3
The hop lunge generated greater peak ankle joint moments and knee and ankle joint powers, enabling higher positive power output and potentially more efficient lunging.
4
The hop lunge produced larger reaction forces during loading and drive-off than both kick and step-in lunges.
5
The step-in lunge also generated lower mean peak hip joint power than the kick lunge, potentially reducing muscular demands during recovery.

three badminton-specific lunge tasks (kick, step-in, and hop lunge) performed by experienced male badminton players

the biomechanics and performance characteristics of the lunge tasks, including ground reaction forces, lower-limb kinematics, joint kinetics, and muscular demands of recovery

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2010-01-01
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Gregor Kuntze
Neil J. Mansfield
William I. Sellers
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