Biomechanics of Tori body motion during competition Sutemi, Makikomi, Tai Atari
Attilio Sacripanti, Envic Galea, Florin Daniel Lascau

TL;DR
This study develops biomechanical models to analyze Tori's body motion during judo techniques, providing insights into effectiveness, safety, and strategic application in competitions.
Contribution
It introduces two original theoretical biomechanical models for Sutemi, Makikomi, and Tai Atari techniques, enhancing understanding of their mechanics and application.
Findings
Effective techniques depend on correct use of Tori's body mass.
Angular velocity relates to gravitational acceleration and body angle.
Tai Atari force quantification informs situational strategy.
Abstract
Background Objectives:The biomechanics of Tori s body motion during Sutemi,sacrifice techniques,Makikomi wrapping techniques,and Tai Atari,Body Strike techniques in judo is crucial for understanding these techniques' effectiveness and safety. This study examined the biomechanics by analysing the entire body of the tori during execution. Methods:We analysed Tori s body motion using original biomechanical models, considering the balance of sacrificing to throw Uke and body mass to strike the opponent. General equations for Sutemi, Makikomi, and Tai atari were established, and their utilisation in high level male competition was statistically analysed. Results:The results show that effective Sutemi and Makikomi execution depends on the correct use of Tori's body mass.The biomechanical model revealed the relationships between angular falling speed, body angle, and athlete height.The model…
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Taxonomy
TopicsMartial Arts: Techniques, Psychology, and Education · Exercise and Physiological Responses · Musicians’ Health and Performance
