Evaluation of a Subject-Specific, Torque-Driven Computer Simulation Model of One-Handed Tennis Backhand Ground Strokes.

A torque-driven, subject-specific 3-D computer simulation model of the impact phase of one-handed tennis backhand strokes was evaluated by comparing performance and simulation results. Backhand strokes of an elite subject were recorded on an artificial tennis court. Over the 50-ms period after impac...

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Detalles Bibliográficos
Publicado en:Journal of Applied Biomechanics Vol. 27; no. 4; pp. 345 - 355
Autores principales: Kentel, Behzat B., King, Mark A., Mitchell, Sean R.
Formato: equations & formulas pictorial research tables/charts Journal Article
Publicado: Human Kinetics Publishers, Inc. Nov2011
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:A torque-driven, subject-specific 3-D computer simulation model of the impact phase of one-handed tennis backhand strokes was evaluated by comparing performance and simulation results. Backhand strokes of an elite subject were recorded on an artificial tennis court. Over the 50-ms period after impact, good agreement was found with an overall RMS difference of 3.3° between matching simulation and performance in terms of joint and racket angles. Consistent with previous experimental research, the evaluation process showed that grip tightness and ball impact location are important factors that affect postimpact racket and arm kinematics. Associated with these factors, the model can be used for a better understanding of the eccentric contraction of the wrist extensors during one-handed backhand ground strokes, a hypothesized mechanism of tennis elbow.