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      The effect of a reduced first step width on starting block and first stance power and impulses during an athletic sprint start.

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          Abstract

          This study investigated how manipulating first step width affects 3D external force production, centre of mass (CoM) motion and performance in athletic sprinting. Eight male and 2 female competitive sprinters (100m PB: 11.03 ± 0.36 s male and 11.6 ± 0.45 s female) performed 10 maximal effort block starts. External force and three-dimensional kinematics were recorded in both the block and first stance phases. Five trials were performed with the athletes performing their preferred technique (Skating) and five trials with the athletes running inside a 0.3 m lane (Narrow). By reducing step width from a mean of 0.31 ± 0.06 m (Skating) to 0.19 ± 0.03 m (Narrow), reductions were found between the two styles in medial block and medial 1st stance impulses, 1st stance anterior toe-off velocity and mediolateral motion of the CoM. No differences were found in block time, step length, stance time, average net resultant force vector, net anteroposterior impulse nor normalised external power. Step width correlated positively with medial impulse but not with braking nor net anteroposterior impulse. Despite less medially directed forces and less mediolateral motion of the CoM in the Narrow trials, no immediate improvement to performance was found by restricting step width.

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          Author and article information

          Journal
          J Sports Sci
          Journal of sports sciences
          Informa UK Limited
          1466-447X
          0264-0414
          May 2019
          : 37
          : 9
          Affiliations
          [1 ] a GIH, Swedish School of Sport and Health Sciences , Stockholm , Sweden.
          [2 ] b KTH BioMEx Center and KTH Mechanics, Royal Institute of Technology , Stockholm , Sweden.
          [3 ] c Karolinska Institutet , Stockholm , Sweden.
          Article
          10.1080/02640414.2018.1541161
          30460879
          5cc272dd-ce9e-443a-88be-0881262c4ceb
          History

          foot placement,impulse,CoM motion,Sprinting,external power
          foot placement, impulse, CoM motion, Sprinting, external power

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