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Gait Complexity and Regularity Are Differently Modulated by Treadmill Walking in Parkinson's Disease and Healthy Population

Authors :
UCL - SSS/IREC/NMSK - Neuro-musculo-skeletal Lab
UCL - SSS/IONS/NEUR - Clinical Neuroscience
UCL - (SLuc) Service de médecine physique et de réadaptation motrice
UCL - (SLuc) Service de neurologie
Warlop, Thibault
Detrembleur, Christine
Stoquart, Gaëtan
Lejeune, Thierry
Jeanjean, Anne
UCL - SSS/IREC/NMSK - Neuro-musculo-skeletal Lab
UCL - SSS/IONS/NEUR - Clinical Neuroscience
UCL - (SLuc) Service de médecine physique et de réadaptation motrice
UCL - (SLuc) Service de neurologie
Warlop, Thibault
Detrembleur, Christine
Stoquart, Gaëtan
Lejeune, Thierry
Jeanjean, Anne
Source :
Frontiers in Physiology, Vol. 9, p. 68 [1-13] (2018)
Publication Year :
2018

Abstract

Variability raises considerable interest as a promising and sensitive marker of dysfunction in physiology, in particular in neurosciences. Both internally (e.g., pathology) and/or externally (e.g., environment) generated perturbations and the neuro-mechanical responses to them contribute to the fluctuating dynamics of locomotion. Defective internal gait control in Parkinson’s disease (PD), resulting in typical timing gait disorders, is characterized by the breakdown of the temporal organization of stride duration variability. Influence of external cue on gait pattern could be detrimental or advantageous depending on situations (healthy or pathological gait pattern, respectively). As well as being an interesting rehabilitative approach in PD, treadmills are usually implemented in laboratory settings to perform instrumented gait analysis including gait variability assessment. However, possibly acting as an external pacemaker, treadmill could modulate the temporal organization of gait variability of PD patients which could invalidate any gait variability assessment. This study aimed to investigate the immediate influence of treadmill walking (TW) on the temporal organization of stride duration variability in PD and healthy population. Here, we analyzed the gait pattern of 20 PD patients and 15 healthy age-matched subjects walking on overground and on a motorized-treadmill (randomized order) at a self-selected speed. The temporal organization and regularity of time series of walking were assessed on 512 consecutive strides and assessed by the application of non-linear mathematical methods (i.e., the detrended fluctuation analysis and power spectral density; and sample entropy, for the temporal organization and regularity of gait variability, respectively). A more temporally organized and regular gait pattern seems to emerge from TW in PD while no influence was observed on healthy gait pattern. Treadmill could afford the necessary framework to regulate gait rhythmicity i

Details

Database :
OAIster
Journal :
Frontiers in Physiology, Vol. 9, p. 68 [1-13] (2018)
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1130455147
Document Type :
Electronic Resource