This review synthesizes golf biomechanics and exercise physiology to propose targeted training strategies that optimize swing mechanics, enhance power and endurance, and reduce injury risk.
Biomechanical analysis of the golf swing integrates kinematics, kinetics and neuromuscular control to optimize performance, inform technique refinement, and mitigate injury risk through evidence-based interventions.
This article synthesizes biomechanical principles of follow-through mechanics, detailing kinematics, neuromuscular coordination, and sensory feedback to optimize swing precision, consistency, and performance.
Evaluating Innovative Golf Tricks: An Analytical Study evaluates creative techniques used by elite golfers, analyzing effectiveness, adaptability, and competitive impact via biomechanical and statistical methods.
A synthesis of biomechanics, physiology, and training research presenting evidence-based strategies to optimize golf-specific fitness, enhance performance, and reduce injury risk.
Biomechanical analysis of the golf swing integrates kinematics, kinetics, and neuromuscular control to optimize performance, refine technique, and mitigate injury through evidence-based interventions.
This review synthesizes kinematic, kinetic, and neuromuscular evidence on golf-swing mechanics, highlighting biomechanical determinants of performance, injury mechanisms, and implications for technique refinement.
This review synthesizes kinematic, kinetic, and neuromuscular evidence to inform technique optimization and injury prevention, proposing data-driven strategies for efficient, reproducible golf swings.
An academic review of golf-swing biomechanics – integrating kinematics, kinetics, and neuromuscular dynamics – to guide evidence-based technique refinement and reduce injury risk.
Analyzing biomechanical determinants of the golf follow-through, this study integrates kinematics, neuromuscular coordination and sensorimotor feedback to improve swing precision, consistency and performance.