Contextual interference during adaptation to asymmetric split-belt treadmill walking results in transfer of unique gait mechanics

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Contextual interference during adaptation to asymmetric split-belt treadmill walking results in transfer of unique gait mechanics

When humans make errors in stepping during walking due to a perturbation, they may adapt their gait as a way to correct for discrepancies between predicted and actual sensory feedback. This study sought to determine if increased contextual interference during acquisition of a novel asymmetric gait pattern would change lower-limb mechanical strategies generalized to different walking contexts. S...

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Motor adaptation following split - belt treadmill walking 1

25 Malone et al. (2011) investigated the effects of different training paradigms on the day–by26 day retention of learned motor patterns. In this forum article, a description and assessment 27 of the methods used will be presented. The interpretation of the findings will be extended 28 and the possible implications will be discussed. Finally, alternative explanations of the 29 possible regions ...

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Neuro Forum Motor adaptation following split-belt treadmill walking

Stubbs PW, Gervasio S. Motor adaptation following split-belt treadmill walking. J Neurophysiol 108: 1225–1227, 2012. First published May 2, 2012; doi:10.1152/jn.01197.2011.—Malone L, Vasudevan E, and Bastian A (J Neurosci 31: 15136–15143, 2011) investigated the effects of different training paradigms on the day-by-day retention of learned motor patterns. In this Neuro Forum, a description and a...

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Kinetic adaptation during locomotion on a split-belt treadmill.

It has been suggested that a feedforward control mechanism drives the adaptation of the spatial and temporal interlimb locomotion variables. However, the internal representation of limb kinetics during split-belt locomotion has not yet been studied. In hand movements, it has been suggested that kinetic and kinematic parameters are controlled by separate neural processes; therefore, it is possib...

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Gait asymmetry during early split-belt walking is related to perception of belt speed difference.

Gait adaptation is essential for humans to walk according to the different demands of the environment. Although locomotor adaptation has been studied in different contexts and in various patient populations, the mechanisms behind locomotor adaptation are still not fully understood. The aim of the present study was to test two opposing hypotheses about the control of split-belt walking, one base...

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ژورنال

عنوان ژورنال: Biology Open

سال: 2017

ISSN: 2046-6390

DOI: 10.1242/bio.028241