Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports

The sprint-stop-turn-sprint movement in the shuttle run is a key movement in most intermittent sports. It is executed countless of times during practice and competition which gives rise to the concern of overuse injuries. Studies have examined the acute injuries related to this movement but there is...

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Main Author: Muhammad Zaki Ghazali Abdullah Tan
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Format: Final Year Project
Language:English
Published: Nanyang Technological University 2021
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Online Access:https://hdl.handle.net/10356/153088
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spelling sg-ntu-dr.10356-1530882021-11-14T20:10:53Z Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports Muhammad Zaki Ghazali Abdullah Tan - Govindasamy Balasekaran govindasamy.b@nie.edu.sg Science::General The sprint-stop-turn-sprint movement in the shuttle run is a key movement in most intermittent sports. It is executed countless of times during practice and competition which gives rise to the concern of overuse injuries. Studies have examined the acute injuries related to this movement but there is a lack of emphasis on the overuse injury aspect. The first aim of this study was to investigate the relationship between step length and the ground reaction force (GRF) while decelerating. The second aim was to compare the performance between competitive and recreational intermittent sports players. For this study, peak force and force gradient were the variables that represent GRF. 58 male participants were recruited for the study (mean ± SD, age 23.8 ± 1.2 years, body mass 71.2 ± 11.2 kg). They were tasked to complete 3 laps of shuttle run with sufficient rest in between. Pearson’s Correlation test indicated that there was no significant relationship between both step length and peak force (r = 0.039, p = 0.780), and between step length and force gradient (r = -0.222, p = 0.103). MANOVA analysis showed that there were no significant difference between competitive and recreational players for step length, peak force and force gradient [F(3, 51) = 1.713, p = 0.176, TracePillai = 0.092] despite a better performance by the competitive group. From this study, step length did not affect the GRF during the deceleration phase of the shuttle run and that there was no significant difference between competitive and recreational players. Bachelor of Science (Sport Science and Management) 2021-11-08T02:09:22Z 2021-11-08T02:09:22Z 2021 Final Year Project (FYP) Muhammad Zaki Ghazali Abdullah Tan (2021). Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/153088 https://hdl.handle.net/10356/153088 en IRB-2021-318 application/pdf Nanyang Technological University
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Science::General
spellingShingle Science::General
Muhammad Zaki Ghazali Abdullah Tan
Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
description The sprint-stop-turn-sprint movement in the shuttle run is a key movement in most intermittent sports. It is executed countless of times during practice and competition which gives rise to the concern of overuse injuries. Studies have examined the acute injuries related to this movement but there is a lack of emphasis on the overuse injury aspect. The first aim of this study was to investigate the relationship between step length and the ground reaction force (GRF) while decelerating. The second aim was to compare the performance between competitive and recreational intermittent sports players. For this study, peak force and force gradient were the variables that represent GRF. 58 male participants were recruited for the study (mean ± SD, age 23.8 ± 1.2 years, body mass 71.2 ± 11.2 kg). They were tasked to complete 3 laps of shuttle run with sufficient rest in between. Pearson’s Correlation test indicated that there was no significant relationship between both step length and peak force (r = 0.039, p = 0.780), and between step length and force gradient (r = -0.222, p = 0.103). MANOVA analysis showed that there were no significant difference between competitive and recreational players for step length, peak force and force gradient [F(3, 51) = 1.713, p = 0.176, TracePillai = 0.092] despite a better performance by the competitive group. From this study, step length did not affect the GRF during the deceleration phase of the shuttle run and that there was no significant difference between competitive and recreational players.
author2 -
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Muhammad Zaki Ghazali Abdullah Tan
format Final Year Project
author Muhammad Zaki Ghazali Abdullah Tan
author_sort Muhammad Zaki Ghazali Abdullah Tan
title Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
title_short Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
title_full Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
title_fullStr Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
title_full_unstemmed Running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
title_sort running dynamics in shuttle run between competitive and recreational athletes of intermittent sports
publisher Nanyang Technological University
publishDate 2021
url https://hdl.handle.net/10356/153088
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