An academic synthesis of golf-swing biomechanics, detailing kinematics, kinetics, and neuromuscular control to guide evidence-based technique refinement and reduce injury risk.
This review synthesizes kinematic, kinetic, and neuromuscular evidence on golf-swing mechanics, highlighting biomechanical determinants of performance, injury mechanisms, and implications for technique refinement.
Examines follow-through biomechanics in golf, highlighting kinematic sequencing, efficient energy transfer, and dynamic balance to enhance shot precision through optimized posture and timing.
Analyzes follow-through biomechanics in golf and their effects on shot precision, emphasizing kinematic sequencing, efficient energy transfer, balance maintenance, and posture control to optimize shot accuracy.
This study synthesizes biomechanical analyses of joint kinematics, muscle activation, and kinetic sequencing in the golf swing, proposing optimization strategies to enhance performance and mitigate injury risk.
This review integrates biomechanics, physiological determinants, and evidence-based training to elucidate how targeted strength, mobility, and motor control interventions optimize golf performance and reduce injury risk.
This review synthesizes kinematic, kinetic, and neuromuscular evidence underlying the modern golf swing, highlighting technique optimization and injury-mitigation strategies for practitioners and researchers.
This comprehensive biomechanical study synthesizes kinematic, kinetic, and neuromuscular analyses of the golf swing to inform technique optimization, performance enhancement, and injury mitigation strategies.
This study examines the biomechanics of the golf swing follow-through, emphasizing joint sequencing, momentum transfer, and controlled deceleration to enhance accuracy, consistency, and reduce injury risk.