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Tytuł pozycji:

Improvement in sprint start performance by modulating an initial loading location on the starting blocks.

Tytuł:
Improvement in sprint start performance by modulating an initial loading location on the starting blocks.
Autorzy:
Nagahara R; National Institute of Fitness and Sports in Kanoya, Kanoya , Kagoshima, Japan.
Gleadhill S; National Institute of Fitness and Sports in Kanoya, Kanoya , Kagoshima, Japan.
Ohshima Y; Institute for General Education, Ritsumeikan University , Kusatsu, Shiga, Japan.
Źródło:
Journal of sports sciences [J Sports Sci] 2020 Nov; Vol. 38 (21), pp. 2437-2445. Date of Electronic Publication: 2020 Jul 01.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: 2007- : London : Routledge
Original Publication: [London, England] : Published by E. & F.N. Spon on behalf of the Society of Sports Sciences, [c1983-
MeSH Terms:
Weight-Bearing*
Athletic Performance/*physiology
Foot/*physiology
Running/*physiology
Acceleration ; Biomechanical Phenomena ; Humans ; Male ; Reaction Time ; Sports Equipment ; Young Adult
Contributed Indexing:
Keywords: Block clearance; GRF; SPM; acceleration; power
Entry Date(s):
Date Created: 20200702 Date Completed: 20201029 Latest Revision: 20201029
Update Code:
20240105
DOI:
10.1080/02640414.2020.1787698
PMID:
32608346
Czasopismo naukowe
This study examined whether modulation of the centre of pressure (COP) on the starting block surface would improve sprint start performance. Twenty male national-level sprinters performed 15-m sprints from the starting blocks in three different conditions (normal, anterior loading and posterior loading), during which ground reaction forces (GRFs) were recorded. The COP location, 10-m time, average horizontal external power (AHEP), spatiotemporal and GRF variables were calculated. The results demonstrate that, although modulation of COP location may not improve sprint start performance for the entire group, it could improve the corresponding performance for specific individuals. A sprinter who favours the posterior front block location and more to the posterior rear block COP location on the block surface at the set position could possibly improve AHEP using the anterior loading condition. An improvement of AHEP in the anterior loading condition (p =.056, effect size [ES] =.305) would be accomplished by greater rear block anteroposterior mean force (p =.043, ES =.574). Moreover, the posterior loading condition may improve the 10-m time and/or AHEP for some individuals, whereas no specific characteristics of the individuals were found. Finally, an improvement of 10-m time in the posterior loading condition (p =.015, ES =.609) would be accomplished by shorter reaction time (p =.035, ES =.780).

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