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Biomechanics of World-Class Men and Women Hurdlers

Datos Bibliográficos

ID5285050
AutoresBrian Hanley (0000-0001-7940-1904, Leeds Beckett University, autor de correspondencia), Josh Walker (0000-0002-8507-7706, Leeds Beckett University), Giorgos Paradisis (0000-0002-5633-2878, National and Kapodistrian University of Athens), Giorgos P Paradisis, Stéphane Merlino (International University of Monaco), Athanassios Bissas (0000-0002-7858-9623, British Athletics)
Año2021
Volumen3
Fecha de publicación2021-07-08
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaFrontiers in Sports and Active Living (JOURNAL)
Identificadores de la revistaISSN: 2624-9367 • E-ISSN: 2624-9367
EditorialFrontiers Media SA (PUBLISHER • CH)
DOI10.3389/fspor.2021.704308
OpenAlexW3182405083
IdiomaEN
Citas recibidas2
Referencias citadas10

The sprint hurdle events require athletes to cross ten hurdles between the start and finish line. The height of the hurdles, and the distances between them, differ for men and women, possibly resulting in technical differences. The aim of this study was to provide a kinematic comparison of in-competition hurdle technique for world-class men and women hurdlers. Video data were collected for the 16 finalists in the 100 m and 110 m hurdles events at the 2017 IAAF World Championships using four high-speed cameras (150 Hz), focusing on the sixth hurdle for the men and fifth for the women. Center of mass (CM) position, joint angles, step lengths and clearance times were compared between sexes at key events before, during and after hurdle clearance. The hurdle height was ~7% higher for men when calculated as a proportion of stature (p < 0.001). This discrepancy in relative hurdle height provided women with a kinematic and mechanical advantage over men as they took off farther from the hurdle (relative to hurdle height) (p < 0.001), leading to a lower and more efficient flight parabola. Women were also able to maintain longer relative step lengths after hurdle clearance and showed minimal vertical oscillation of the CM in the stance phases before and after the hurdle compared with men. The lower relative hurdle heights in the women's event provide a less demanding task, and thus these findings present preliminary evidence to those coaches who advocate revising the women's hurdle heights in competition

Athletes · Kinematics · Physical therapy · Physics · Sprint · Track and field athletics · World class · Demography · Engineering · Lower Extremity Biomechanics and Pathologies · Mathematics · Medicine · Sports injuries and prevention · Sports Performance and Training

  • Do Different Hurdle Heights Alter Important Spatiotemporal Variables in Hurdle Clearance

    Open Access•Yusuke Ozaki, Takeshi Ueda•Frontiers in Sports and Active…•2022

  • Kinematic and Temporal Differences Between World-Class Men's and Women's Hurdling Techniques

    Open Access•Athanassios Bissas, Giorgos Paradisis et al.•Frontiers in Sports and Active…•2022

  • Differences in the Force Velocity Mechanical Profile and the Effectiveness of Force Application During Sprint-Acceleration Between Sprinters and Hurdlers

    Open Access•Ioannis Stavridis, Ilias Smilios et al.•Frontiers in Sports and Active…•2019

  • World-Class Male Sprinters and High Hurdlers Have Similar Start and Initial Acceleration Techniques

    Open Access•Ian N Bezodis, Ian Bezodis et al.•Frontiers in Sports and Active…•2019

Obras citantes distintas2
Citas por año0,5
Intervalo de citas2022 - 2022 (1)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 2
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