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Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting

While the sport of short-distance (Sprint) triathlon provides an opportunity to research the effect of the center of mass (CoM) when cycling and running, much remains to be done. The literature has failed to consistently or adequately report how changes to hand position influence subsequent running...

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Autores principales: Evans, Stuart A., James, Daniel, Rowlands, David, Lee, James B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9207334/
https://www.ncbi.nlm.nih.gov/pubmed/35734240
http://dx.doi.org/10.3389/fspor.2022.852369
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author Evans, Stuart A.
James, Daniel
Rowlands, David
Lee, James B.
author_facet Evans, Stuart A.
James, Daniel
Rowlands, David
Lee, James B.
author_sort Evans, Stuart A.
collection PubMed
description While the sport of short-distance (Sprint) triathlon provides an opportunity to research the effect of the center of mass (CoM) when cycling and running, much remains to be done. The literature has failed to consistently or adequately report how changes to hand position influence subsequent running as inferred by the magnitude of CoM acceleration. The demands of cycle training in a drops and aerodynamic position followed by running remain unquantified in Sprint Distance triathlon. Thus, far data collected indicate that the cycle to run transition (T2) is important for overall race success. While many age-groupers participate in Sprint Distance triathlon, the lack of T2 based research make comparisons between cycle hand position and ensuing running difficult. The motion of the human body when cycling and running in triathlon can be described by the motion of its CoM in a local coordinate system. Unobtrusive wearable sensors have proven to be an informative resource to monitor the magnitude of CoM accelerations in running. However, the extent to which they are used in cycling is unclear. Therefore, the aim of the present study was to analyse the temporal magnitudes of CoM acceleration when cycling position and cadence is changed and to analyse these effects on running after cycling. Ten recreational triathletes completed two 20 km cycling trials at varied cadence in a drops position (parts of the handlebars that curve outward, Cycle(Drops)) and an aerodynamic position (arms bent, forearms parallel to the ground, Cycle(Aero)) immediately followed by a 5 km run at self-selected pace. Torso kinematics by way of CoM acceleration magnitude were captured in a typical training setting using a triaxial accelerometer. CoM acceleration was quantified in m/s(2) and variability was measured by the coefficient of variation (CV) and root mean square (RMS). Results from Cycle(Aero) indicated that acceleration of the CoM in longitudinal (CV = 1%) and mediolateral directions (CV = 3%) was significantly reduced (p < 0.001) compared to Cycle(Drops). As for rate of perceived exertion (RPE), a significant difference was observed with triathletes reporting higher values in Cycle(Aero) alongside a greater CoM acceleration magnitude in the anteroposterior direction. The CoM varied significantly from Run(Aero) with less longitudinal (CV = 0.2, p < 0.001) and mediolateral acceleration observed (CV = 7.5%, p < 0.001) compared to Run(Drops). Although greater longitudinal acceleration was observed in the initial 1 km epoch of Run(Aero), triathletes then seemingly adjusted their CoM trajectory to record lower magnitudes until completion of the 5 km run, completing the run quicker compared to Run(Drops) (22.56 min(1) ± 0.2, 23.34 min(1) ± 0.5, p < 0.001, CV = 1.3%). Coaches may look to use triaxial accelerometers to monitor performance in both cycling and running after cycling.
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spelling pubmed-92073342022-06-21 Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting Evans, Stuart A. James, Daniel Rowlands, David Lee, James B. Front Sports Act Living Sports and Active Living While the sport of short-distance (Sprint) triathlon provides an opportunity to research the effect of the center of mass (CoM) when cycling and running, much remains to be done. The literature has failed to consistently or adequately report how changes to hand position influence subsequent running as inferred by the magnitude of CoM acceleration. The demands of cycle training in a drops and aerodynamic position followed by running remain unquantified in Sprint Distance triathlon. Thus, far data collected indicate that the cycle to run transition (T2) is important for overall race success. While many age-groupers participate in Sprint Distance triathlon, the lack of T2 based research make comparisons between cycle hand position and ensuing running difficult. The motion of the human body when cycling and running in triathlon can be described by the motion of its CoM in a local coordinate system. Unobtrusive wearable sensors have proven to be an informative resource to monitor the magnitude of CoM accelerations in running. However, the extent to which they are used in cycling is unclear. Therefore, the aim of the present study was to analyse the temporal magnitudes of CoM acceleration when cycling position and cadence is changed and to analyse these effects on running after cycling. Ten recreational triathletes completed two 20 km cycling trials at varied cadence in a drops position (parts of the handlebars that curve outward, Cycle(Drops)) and an aerodynamic position (arms bent, forearms parallel to the ground, Cycle(Aero)) immediately followed by a 5 km run at self-selected pace. Torso kinematics by way of CoM acceleration magnitude were captured in a typical training setting using a triaxial accelerometer. CoM acceleration was quantified in m/s(2) and variability was measured by the coefficient of variation (CV) and root mean square (RMS). Results from Cycle(Aero) indicated that acceleration of the CoM in longitudinal (CV = 1%) and mediolateral directions (CV = 3%) was significantly reduced (p < 0.001) compared to Cycle(Drops). As for rate of perceived exertion (RPE), a significant difference was observed with triathletes reporting higher values in Cycle(Aero) alongside a greater CoM acceleration magnitude in the anteroposterior direction. The CoM varied significantly from Run(Aero) with less longitudinal (CV = 0.2, p < 0.001) and mediolateral acceleration observed (CV = 7.5%, p < 0.001) compared to Run(Drops). Although greater longitudinal acceleration was observed in the initial 1 km epoch of Run(Aero), triathletes then seemingly adjusted their CoM trajectory to record lower magnitudes until completion of the 5 km run, completing the run quicker compared to Run(Drops) (22.56 min(1) ± 0.2, 23.34 min(1) ± 0.5, p < 0.001, CV = 1.3%). Coaches may look to use triaxial accelerometers to monitor performance in both cycling and running after cycling. Frontiers Media S.A. 2022-06-06 /pmc/articles/PMC9207334/ /pubmed/35734240 http://dx.doi.org/10.3389/fspor.2022.852369 Text en Copyright © 2022 Evans, James, Rowlands and Lee. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Sports and Active Living
Evans, Stuart A.
James, Daniel
Rowlands, David
Lee, James B.
Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title_full Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title_fullStr Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title_full_unstemmed Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title_short Variability of the Center of Mass in Trained Triathletes in Running After Cycling: A Preliminary Study Conducted in a Real-Life Setting
title_sort variability of the center of mass in trained triathletes in running after cycling: a preliminary study conducted in a real-life setting
topic Sports and Active Living
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9207334/
https://www.ncbi.nlm.nih.gov/pubmed/35734240
http://dx.doi.org/10.3389/fspor.2022.852369
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