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Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs

Running biomechanics and its evolution that occurs over intensive trials are widely studied, but few studies have focused on the reproducibility of stride evolution in these runs. The purpose of this investigation was to assess the reproducibility of changes in eight biomechanical variables during e...

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Autores principales: Martens, Géraldine, Deflandre, Dorian, Schwartz, Cédric, Dardenne, Nadia, Bury, Thierry
Formato: Online Artículo Texto
Lenguaje:English
Publicado: De Gruyter Open 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231343/
https://www.ncbi.nlm.nih.gov/pubmed/30429899
http://dx.doi.org/10.1515/hukin-2017-0184
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author Martens, Géraldine
Deflandre, Dorian
Schwartz, Cédric
Dardenne, Nadia
Bury, Thierry
author_facet Martens, Géraldine
Deflandre, Dorian
Schwartz, Cédric
Dardenne, Nadia
Bury, Thierry
author_sort Martens, Géraldine
collection PubMed
description Running biomechanics and its evolution that occurs over intensive trials are widely studied, but few studies have focused on the reproducibility of stride evolution in these runs. The purpose of this investigation was to assess the reproducibility of changes in eight biomechanical variables during exhaustive runs, using three-dimensional analysis. Ten male athletes (age: 23 ± 4 years; maximal oxygen uptake: 57.5 ± 4.4 ml0(2)·min(-1)·kg(-1); maximal aerobic speed: 19.3 ± 0.8 km·h(-1)) performed a maximal treadmill test. Between 3 to 10 days later, they started a series of three time-to-exhaustion trials at 90% of the individual maximal aerobic speed, seven days apart. During these trials eight biomechanical variables were recorded over a 20-s period every 4 min until exhaustion. The evolution of a variable over a trial was represented as the slope of the linear regression of these variables over time. Reproducibility was assessed with intraclass correlation coefficients and variability was quantified as standard error of measurement. Changes in five variables (swing duration, stride frequency, step length, centre of gravity vertical and lateral amplitude) showed moderate to good reproducibility (0.48 ≤ ICC ≤ 0.72), while changes in stance duration, reactivity and foot orientation showed poor reproducibility (-0.71 ≤ ICC ≤ 0.04). Fatigue-induced changes in stride biomechanics do not follow a reproducible course across the board; however, several variables do show satisfactory stability: swing duration, stride frequency, step length and centre of gravity shift.
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spelling pubmed-62313432018-11-14 Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs Martens, Géraldine Deflandre, Dorian Schwartz, Cédric Dardenne, Nadia Bury, Thierry J Hum Kinet Section I – Kinesiology Running biomechanics and its evolution that occurs over intensive trials are widely studied, but few studies have focused on the reproducibility of stride evolution in these runs. The purpose of this investigation was to assess the reproducibility of changes in eight biomechanical variables during exhaustive runs, using three-dimensional analysis. Ten male athletes (age: 23 ± 4 years; maximal oxygen uptake: 57.5 ± 4.4 ml0(2)·min(-1)·kg(-1); maximal aerobic speed: 19.3 ± 0.8 km·h(-1)) performed a maximal treadmill test. Between 3 to 10 days later, they started a series of three time-to-exhaustion trials at 90% of the individual maximal aerobic speed, seven days apart. During these trials eight biomechanical variables were recorded over a 20-s period every 4 min until exhaustion. The evolution of a variable over a trial was represented as the slope of the linear regression of these variables over time. Reproducibility was assessed with intraclass correlation coefficients and variability was quantified as standard error of measurement. Changes in five variables (swing duration, stride frequency, step length, centre of gravity vertical and lateral amplitude) showed moderate to good reproducibility (0.48 ≤ ICC ≤ 0.72), while changes in stance duration, reactivity and foot orientation showed poor reproducibility (-0.71 ≤ ICC ≤ 0.04). Fatigue-induced changes in stride biomechanics do not follow a reproducible course across the board; however, several variables do show satisfactory stability: swing duration, stride frequency, step length and centre of gravity shift. De Gruyter Open 2018-10-15 /pmc/articles/PMC6231343/ /pubmed/30429899 http://dx.doi.org/10.1515/hukin-2017-0184 Text en © 2018 Editorial Committee of Journal of Human Kinetics http://creativecommons.org/licenses/by-nc-nd/3.0 This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
spellingShingle Section I – Kinesiology
Martens, Géraldine
Deflandre, Dorian
Schwartz, Cédric
Dardenne, Nadia
Bury, Thierry
Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title_full Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title_fullStr Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title_full_unstemmed Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title_short Reproducibility of the Evolution of Stride Biomechanics During Exhaustive Runs
title_sort reproducibility of the evolution of stride biomechanics during exhaustive runs
topic Section I – Kinesiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6231343/
https://www.ncbi.nlm.nih.gov/pubmed/30429899
http://dx.doi.org/10.1515/hukin-2017-0184
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