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Responses in knee joint muscle activation patterns to different perturbations during gait in healthy subjects
Affiliation:1. Amsterdam UMC, Vrije Universiteit Amsterdam, Department of rehabilitation medicine, Amsterdam Movement Sciences, de Boelelaan 1117, Amsterdam, The Netherlands;2. Amsterdam UMC, University of Amsterdam, Medical Imaging Quantification Center (MIQC), Department of Radiology and Nuclear Medicine, Amsterdam Movement Sciences, Meibergdreef 9, Amsterdam, The Netherlands;3. Amsterdam Rehabilitation Research Center, Reade, Amsterdam, The Netherlands;4. Centre of Expertise Urban Vitality, Faculty of Health, Amsterdam University of Applied Science, Amsterdam, The Netherlands;5. Delft University of Technology, Department of Biomechanical Engineering, Delft, The Netherlands;6. Erasmus Medical Center, Department of Orthopedics, Rotterdam, The Netherlands
Abstract:PurposeTo compare the responses in knee joint muscle activation patterns to different perturbations during gait in healthy subjects.ScopeNine healthy participants were subjected to perturbed walking on a split-belt treadmill. Four perturbation types were applied, each at five intensities. The activations of seven muscles surrounding the knee were measured using surface EMG. The responses in muscle activation were expressed by calculating mean, peak, co-contraction (CCI) and perturbation responses (PR) values. PR captures the responses relative to unperturbed gait. Statistical parametric mapping analysis was used to compare the muscle activation patterns between conditions.ResultsPerturbations evoked only small responses in muscle activation, though higher perturbation intensities yielded a higher mean activation in five muscles, as well as higher PR. Different types of perturbation led to different responses in the rectus femoris, medial gastrocnemius and lateral gastrocnemius. The participants had lower CCI just before perturbation compared to the same phase of unperturbed gait.ConclusionsHealthy participants respond to different perturbations during gait with small adaptations in their knee joint muscle activation patterns. This study provides insights in how the muscles are activated to stabilize the knee when challenged. Furthermore it could guide future studies in determining aberrant muscle activation in patients with knee disorders.
Keywords:Knee  Perturbations  Gait  Muscle activation  Joint stability
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