Influence of Target Width and Distance on Postural Adjustments in a Fencing Lunge

Влияние ширины и расстояния до цели на постуральные корректировки при выполнении фехтовального выпада
Anna Akbaş, Wojciech Marszałek, Anna Brachman, Grzegorz Juras
2023-04-17

center of mass kinematicsfencing lungepostural adjustmentstarget distancetarget width
The aim of this study was to examine whether target width and target distance influence the planning phase of a fencing lunge (early and anticipatory postural adjustments) as well as the execution phase of a fencing lunge. Eight elite female fencers participated in the study. The displacement of the center of foot pressure, muscle activity of the tibialis anterior, and kinematics of center of mass were recorded using force plates. The results show that target width and distance have no effect on early and anticipatory postural adjustments as well as the acceleration and velocity of the center of mass at the moment of foot-off. However, a greater target distance was associated with a greater max center of mass acceleration and velocity, and larger target width resulted in a greater max center of mass acceleration during lunging (p < 0.05). We suppose that the effect of task parameters on preparing a fencing lunge may be mitigated due to the specific technique adopted by expert fencers and the ballistic nature of a fencing lunge.
1
Expert fencing technique and the ballistic nature of the lunge may mitigate task-parameter effects during movement preparation.
2
Greater target distance increased maximum center-of-mass acceleration and velocity during lunging (p < 0.05).
3
Greater target width increased maximum center-of-mass acceleration during lunging (p < 0.05).
4
Target width and distance did not affect early or anticipatory postural adjustments during the planning phase of fencing lunges in elite female fencers.
5
Target width and distance did not alter center-of-mass acceleration or velocity at foot-off.

fencing lunge performed by elite female fencers

effects of target width and distance on postural adjustments and center-of-mass acceleration and velocity during the planning and execution phases

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2023-04-17
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Authors
Anna Akbaş
Wojciech Marszałek
Anna Brachman
Grzegorz Juras
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