The influence of athletic background, lower limb dominance and cutting angle on the center of mass kinematics during a sidestep cutting task.

BACKGROUND: Successful performance in futsal depends on athletes' ability to change direction efficiently. AIM: To investigate the effect of athletic background on COM kinematics during sidestep cutting maneuver performed at different cutting angles towards both sides. METHOD: Eighteen futsal athlet...

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Publicado en:Brazilian Journal of Motor Behavior Vol. 17; no. 1; pp. 39 - 48
Autores principales: BEDO, BRUNO L. S., CESAR, GUILHERME M., SOARES, WODYSON T. E., CATELLI, DANILO S., MARQUES, JOÃO B., GOMES, MATHEUS M., SANTIAGO, PAULO R. P.
Formato: pictorial research tables/charts Journal Article
Publicado: Brazilian Journal of Motor Behavior 2023
Acceso en línea:Ver este registro en EBSCOhost
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        19805586
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      dt: 2023
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      pub: Brazilian Journal of Motor Behavior
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        10.20338/bjmb.v17i1.294
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        atl: The influence of athletic background, lower limb dominance and cutting angle on the center of mass kinematics during a sidestep cutting task.
      aug:
        au:
          BEDO, BRUNO L. S.
          CESAR, GUILHERME M.
          SOARES, WODYSON T. E.
          CATELLI, DANILO S.
          MARQUES, JOÃO B.
          GOMES, MATHEUS M.
          SANTIAGO, PAULO R. P.
        affil: Department of Sport, School of Physical Education and Sport, University of São Paulo, São Paulo, SP, Brazil
      sug:
        subj:
          Athletic Performance
          Kinematics
          Task Performance and Analysis
          Movement Physiology
          Step
          Human
          Lower Extremity
          Exercise
          Biomechanics
          Analysis of Variance
          Descriptive Statistics
          Funding Source
      ab: BACKGROUND: Successful performance in futsal depends on athletes' ability to change direction efficiently. AIM: To investigate the effect of athletic background on COM kinematics during sidestep cutting maneuver performed at different cutting angles towards both sides. METHOD: Eighteen futsal athletes participated, comprised of nine high-level training (Group high-level) and nine recreational (Group Control, GC). Twenty reflective markers were placed on the participant's trunk and upper and lower limbs. Participants performed acceleration at maximum speed and in a straight line for 10 meters, followed by a change of direction (30°, 60°, and 90°). The whole body's COM trajectory was identified using a body model for each trial. Differences in angular error and COM speed were evaluated with a three-way analysis of variance [Group (GH vs. GC) X Cutting angle (30° vs. 60° vs. 90°) X Side (dominant and non-dominant), with repeated measures for the last two factors]. RESULTS: The main results indicated that the angular error increased as the cutting angle increased. The high-level futsal athletes performed a cutting task for the dominant side with greater speed and higher angular errors than the control group. These findings provided important information for understanding the trajectory of the center of mass at different angles and velocities and the possible repercussions on body dynamics. CONCLUSION: Athletic background affected the kinematic patterns of the center of mass during sidestep cutting maneuvers; when sidestep is performed with the dominant side, high-level futsal athletes changed direction faster with more significant angular error than recreational athletes.
      pubtype: Academic Journal
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        pictorial
        research
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        Journal Article
      ougenre: Article
    language: English
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