The association of reactive balance control and spinal curvature under lumbar muscle fatigue

Background Although low back fatigue is an important intervening factor for physical functioning among sedentary people, little is known about its possible significance in relation to the spinal posture and compensatory postural responses to unpredictable stimuli. This study investigates the effect...

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Main Authors: Erika Zemková, Alena Cepková, José M. Muyor
Format: Article
Language:English
Published: PeerJ Inc. 2021-08-01
Series:PeerJ
Subjects:
Online Access:https://peerj.com/articles/11969.pdf
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spelling doaj-bddabee295244414be7c30c4e06efa342021-08-12T15:05:16ZengPeerJ Inc.PeerJ2167-83592021-08-019e1196910.7717/peerj.11969The association of reactive balance control and spinal curvature under lumbar muscle fatigueErika Zemková0Alena Cepková1José M. Muyor2Department of Biological and Medical Sciences, Faculty of Physical Education and Sport, Comenius University Bratislava, Bratislava, SlovakiaCentre of Languages and Sports, Faculty of Mechanical Engineering, Slovak University of Technology, Bratislava, SlovakiaLaboratory of Kinesiology, Biomechanics and Ergonomics, Health Research Centre, University of Almería, Almería, SpainBackground Although low back fatigue is an important intervening factor for physical functioning among sedentary people, little is known about its possible significance in relation to the spinal posture and compensatory postural responses to unpredictable stimuli. This study investigates the effect of lumbar muscle fatigue on spinal curvature and reactive balance control in response to externally induced perturbations. Methods A group of 38 young sedentary individuals underwent a perturbation-based balance test by applying a 2 kg load release. Sagittal spinal curvature and pelvic tilt was measured in both a normal and Matthiass standing posture both with and without a hand-held 2 kg load, and before and after the Sørensen fatigue test. Results Both the peak anterior and peak posterior center of pressure (CoP) displacements and the corresponding time to peak anterior and peak posterior CoP displacements significantly increased after the Sørensen fatigue test (all at p < 0.001). A lumbar muscle fatigue led to a decrease of the lumbar lordosis in the Matthiass posture while holding a 2 kg load in front of the body when compared to pre-fatigue conditions both without a load (p = 0.011, d = 0.35) and with a 2 kg load (p = 0.000, d = 0.51). Also the sacral inclination in the Matthiass posture with a 2 kg additional load significantly decreased under fatigue when compared to all postures in pre-fatigue conditions (p = 0.01, d = 0.48). Contrary to pre-fatigue conditions, variables of the perturbation-based balance test were closely associated with those of lumbar curvature while standing in the Matthiass posture with a 2 kg additional load after the Sørensen fatigue test (r values in range from −0.520 to −0.631, all at p < 0.05). Conclusion These findings indicate that lumbar muscle fatigue causes changes in the lumbar spinal curvature and this is functionally relevant in explaining the impaired ability to maintain balance after externally induced perturbations. This emphasizes the importance for assessing both spinal posture and reactive balance control under fatigue in order to reveal their interrelations in young sedentary adults and predict any significant deterioration in later years.https://peerj.com/articles/11969.pdfCompensatory postural responsesMatthiass testPerturbation-based balance testSpinal postureSørensen fatigue testEndurance of the hip and back extensor muscles
collection DOAJ
language English
format Article
sources DOAJ
author Erika Zemková
Alena Cepková
José M. Muyor
spellingShingle Erika Zemková
Alena Cepková
José M. Muyor
The association of reactive balance control and spinal curvature under lumbar muscle fatigue
PeerJ
Compensatory postural responses
Matthiass test
Perturbation-based balance test
Spinal posture
Sørensen fatigue test
Endurance of the hip and back extensor muscles
author_facet Erika Zemková
Alena Cepková
José M. Muyor
author_sort Erika Zemková
title The association of reactive balance control and spinal curvature under lumbar muscle fatigue
title_short The association of reactive balance control and spinal curvature under lumbar muscle fatigue
title_full The association of reactive balance control and spinal curvature under lumbar muscle fatigue
title_fullStr The association of reactive balance control and spinal curvature under lumbar muscle fatigue
title_full_unstemmed The association of reactive balance control and spinal curvature under lumbar muscle fatigue
title_sort association of reactive balance control and spinal curvature under lumbar muscle fatigue
publisher PeerJ Inc.
series PeerJ
issn 2167-8359
publishDate 2021-08-01
description Background Although low back fatigue is an important intervening factor for physical functioning among sedentary people, little is known about its possible significance in relation to the spinal posture and compensatory postural responses to unpredictable stimuli. This study investigates the effect of lumbar muscle fatigue on spinal curvature and reactive balance control in response to externally induced perturbations. Methods A group of 38 young sedentary individuals underwent a perturbation-based balance test by applying a 2 kg load release. Sagittal spinal curvature and pelvic tilt was measured in both a normal and Matthiass standing posture both with and without a hand-held 2 kg load, and before and after the Sørensen fatigue test. Results Both the peak anterior and peak posterior center of pressure (CoP) displacements and the corresponding time to peak anterior and peak posterior CoP displacements significantly increased after the Sørensen fatigue test (all at p < 0.001). A lumbar muscle fatigue led to a decrease of the lumbar lordosis in the Matthiass posture while holding a 2 kg load in front of the body when compared to pre-fatigue conditions both without a load (p = 0.011, d = 0.35) and with a 2 kg load (p = 0.000, d = 0.51). Also the sacral inclination in the Matthiass posture with a 2 kg additional load significantly decreased under fatigue when compared to all postures in pre-fatigue conditions (p = 0.01, d = 0.48). Contrary to pre-fatigue conditions, variables of the perturbation-based balance test were closely associated with those of lumbar curvature while standing in the Matthiass posture with a 2 kg additional load after the Sørensen fatigue test (r values in range from −0.520 to −0.631, all at p < 0.05). Conclusion These findings indicate that lumbar muscle fatigue causes changes in the lumbar spinal curvature and this is functionally relevant in explaining the impaired ability to maintain balance after externally induced perturbations. This emphasizes the importance for assessing both spinal posture and reactive balance control under fatigue in order to reveal their interrelations in young sedentary adults and predict any significant deterioration in later years.
topic Compensatory postural responses
Matthiass test
Perturbation-based balance test
Spinal posture
Sørensen fatigue test
Endurance of the hip and back extensor muscles
url https://peerj.com/articles/11969.pdf
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