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 biomechanical determinants of golf swing follow-through, emphasizing coordinated kinematic sequencing, force transfer, and neuromuscular control to improve shot precision and repeatability.
This article presents evidence-based golf drills grounded in biomechanics and cognitive science, prescribing targeted practice protocols to improve swing consistency, motor control, and on-course performance.
This article examines follow-through control in the golf swing, detailing joint sequencing, momentum transfer, and controlled deceleration to enhance shot accuracy, consistency, and injury prevention.
Evaluating Golf Drills: Effects on Skill and Consistency analyzes how structured drills affect technical proficiency, shot-to-shot variability, and on-course reliability, using empirical metrics and applied insights.
Mastering follow-through biomechanics refines kinematic sequencing, energy transfer, and postural control, advancing shot precision and consistency through evidence-based technique and motor control principles.
This study examines the biomechanics of the golf swing follow-through, emphasizing joint sequencing, momentum transfer, and controlled deceleration to enhance accuracy, consistency, and injury prevention.
Analyzes biomechanical principles of the golf swing follow-through, focusing on joint sequencing, momentum transfer, and controlled deceleration to optimize accuracy, consistency, and injury prevention.