Comparative study on bilateral lower extremity joint mechanics and muscle synergy patterns in Axel jumps between elite and amateur single skaters
Jialiang Yu, Mingda Li, Zhiyuan Chen

TL;DR
This study compares joint mechanics and muscle coordination in Axel jumps between elite and amateur figure skaters to inform better training methods.
Contribution
The study provides new insights into biomechanical and muscle synergy differences during Axel jumps between skater skill levels.
Findings
Elite skaters showed significant differences in left lower limb joint angles during the approach-to-take-off phase.
Elite athletes exhibited earlier and more concentrated activation of primary muscles during the Axel jump transition phase.
Muscle synergy patterns differed between elite and amateur skaters, with elite athletes showing more efficient coordination.
Abstract
This study aimed to reveal the differences in lower limb joint kinematic characteristics and muscle synergy patterns during the Axel jump between amateur and elite figure skaters, providing a theoretical basis for scientific training. Research on this topic, especially regarding in-depth analysis of detailed lower limb joint kinematics and muscle synergy patterns, remains insufficient. Three-dimensional motion capture systems and surface electromyography (sEMG) were used to synchronously collect kinematic and sEMG data from subjects during the approach, take-off, and flight phases of the Axel jump. OpenSim was used to process data on lower limb joint angle changes. Non-negative matrix factorization (NMF) was employed to analyze muscle synergies, muscle weighting, and activation coefficients. Significant differences (P < 0.05) were found in the dynamic changes of multiple left lower…
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Taxonomy
TopicsSports Performance and Training · Muscle activation and electromyography studies · Sports injuries and prevention
