Impact of motor fatigue on spatiotemporal parameters of gait under single-and dual-task conditions in individuals with chronic ankle instability and copers.

Introduction: Chronic ankle instability (CAI) is associated with altered gait mechanics and cognitive-motor deficits, while some individuals with a history of ankle sprain recover successfully as copers. Dual-tasking and fatigue represent common real-world challenges, but their combined effects on g...

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Detalles Bibliográficos
Publicado en:Physiotherapy Theory & Practice Vol. 42; no. 2; pp. 290 - 300
Autores principales: Pirayeh, Nahid, Abrishami, Fateme, Mehravar, Mohammad, Mostafaee, Neda, Najarzadeh, Zahra
Formato: research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Feb2026
Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Introduction: Chronic ankle instability (CAI) is associated with altered gait mechanics and cognitive-motor deficits, while some individuals with a history of ankle sprain recover successfully as copers. Dual-tasking and fatigue represent common real-world challenges, but their combined effects on gait in CAI compared with copers remain unclear. Purpose: To investigate the effects of motor fatigue on spatiotemporal gait parameters under single- and dual-task conditions in individuals with CAI compared with copers. Methods: Thirty individuals with CAI (mean age 26.7 ± 7.2 years) and 30 age- and sex-matched copers, (mean age 24.48 ± 6.2 years) completed gait trials under single- and cognitive dual-task conditions, both before and after a fatiguing exercise protocol. Spatiotemporal gait parameters were recorded, and repeated-measures ANOVA with Bonferroni correction was used to examine main effects and interactions. Results: Dual-tasking significantly altered gait in both groups, with increased step length (p =.005) and step time (p <.001) and reduced step width (p =.018) and step length variability compared with single-task walking (p =.036). Fatigue further modified spatiotemporal parameters. The individuals with CAI showed increased variability in step length, while copers demonstrated decreased variability in step time (p =.021). Cognitive performance remained stable across conditions. Conclusion: Dual-tasking and fatigue interact to shape gait differently in CAI and coper groups. Rather than uniformly impairing gait, dual-tasking sometimes promoted more consistent walking, while fatigue destabilized gait, particularly in individuals with CAI. These findings highlight the importance of incorporating both cognitive and fatigue-related challenges into rehabilitation to better prepare individuals with CAI for real-world demands.