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Coordination abilities and movement organization during the fencing lunge in youth foil fencers: an exploratory biomechanical study

Lina Hussein, Hasan Ashkanani, Laila Al Kilani, Samer Abueid, Hatem Shlool, Hashem A. Kilani · Frontiers in Sports and Active Living · 2026

This exploratory study examined whether coordination abilities—like balance, reaction time, and rhythm—are associated with the speed and timing of movements during the fencing lunge in young foil fencers. After accounting for multiple statistical comparisons, the study found no statistically significant relationships between coordination abilities and lunge kinematics, though some correlations were observed before correction.
Abstract (source)

Background: Coordination abilities are considered fundamental determinants of motor performance and long-term athlete development, yet their relationship with the biomechanical characteristics of fencing performance remains poorly understood. Understanding these relationships may provide valuable insights for evidence-based coaching and athlete development.

Objective: This exploratory study examined the associations between selected coordination abilities and kinematic variables of the fencing lunge in youth foil fencers.

Methods: Nine competitive youth foil fencers (age: 11-15 years) completed a battery of seven coordination ability tests assessing spatial orientation, movement coupling, balance, rhythmic ability, adaptation ability, force differentiation, and reaction ability. Kinematic variables, including successful and unsuccessful defensive movement time, arm velocity, riposte velocity, and front-leg velocity, were obtained from two-dimensional video recordings using Kinovea motion analysis software. Spearman's rank-order correlation coefficients were calculated to examine associations between coordination abilities and biomechanical variables. Holm-Bonferroni correction was applied to account for multiple comparisons.

Results: = -0.622 were also observed for adaptation ability with successful defensive movement time and movement coupling ability with unsuccessful defensive movement time, respectively. However, none of the associations remained statistically significant following Holm-Bonferroni correction. The coefficients are therefore reported descriptively and treated as candidate hypotheses for independent replication.

Conclusion: After correction for multiple comparisons, this exploratory study found no statistically significant associations between the assessed coordination abilities and fencing-lunge kinematics. The observed coefficients do not provide confirmatory evidence that specific coordination abilities contribute to lunge performance; they identify candidate associations for future adequately powered studies. Future research should use larger samples and three-dimensional motion analysis.

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