Literature DB >> 27218896

Error signals driving locomotor adaptation: cutaneous feedback from the foot is used to adapt movement during perturbed walking.

Julia T Choi1,2, Peter Jensen3, Jens Bo Nielsen3, Laurent J Bouyer4.   

Abstract

KEY POINTS: Sensory input from peripheral receptors are important for the regulation of walking patterns. Cutaneous input mediates muscle responses to deal with immediate external perturbations. In this study we focused on the role of cutaneous feedback in locomotor adaptation that takes place over minutes of training. We show that interfering with cutaneous feedback reduced adaptation to ankle perturbations during walking. These results help us understand the neural mechanisms underlying walking adaptation, and have clinical implications for treating walking impairments after neurological injuries. ABSTRACT: Locomotor patterns must be adapted to external forces encountered during daily activities. The contribution of different sensory inputs to detecting perturbations and adapting movements during walking is unclear. In the present study, we examined the role of cutaneous feedback in adapting walking patterns to force perturbations. Forces were applied to the ankle joint during the early swing phase using an electrohydraulic ankle-foot orthosis. Repetitive 80 Hz electrical stimulation was applied to disrupt cutaneous feedback from the superficial peroneal nerve (foot dorsum) and medial plantar nerve (foot sole) during walking (Choi et al. 2013). Sensory tests were performed to measure the cutaneous touch threshold and perceptual threshold of force perturbations. Ankle movement were measured when the subjects walked on the treadmill over three periods: baseline (1 min), adaptation (1 min) and post-adaptation (3 min). Subjects (n = 10) showed increased touch thresholds measured with Von Frey monofilaments and increased force perception thresholds with stimulation. Stimulation reduced the magnitude of walking adaptation to force perturbation. In addition, we compared the effects of interrupting cutaneous feedback using anaesthesia (n = 5) instead of repetitive nerve stimulation. Foot anaesthesia reduced ankle adaptation to external force perturbations during walking. The results of the present study suggest that cutaneous input plays a role in force perception, and may contribute to the 'error' signal involved in driving walking adaptation when there is a mismatch between expected and actual force.
© 2016 The Authors. The Journal of Physiology © 2016 The Physiological Society.

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Year:  2016        PMID: 27218896      PMCID: PMC5043025          DOI: 10.1113/JP271996

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  26 in total

Review 1.  The roles and functions of cutaneous mechanoreceptors.

Authors:  K O Johnson
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3.  Contribution of cutaneous inputs from the hindpaw to the control of locomotion. I. Intact cats.

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4.  Joint sense, muscle sense, and their combination as position sense, measured at the distal interphalangeal joint of the middle finger.

Authors:  S C Gandevia; D I McCloskey
Journal:  J Physiol       Date:  1976-09       Impact factor: 5.182

5.  Motor learning and its sensory effects: time course of perceptual change and its presence with gradual introduction of load.

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Review 6.  Adaptive psychophysical procedures.

Authors:  B Treutwein
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7.  Changes in motor commands, as shown by changes in perceived heaviness, during partial curarization and peripheral anaesthesia in man.

Authors:  S C Gandevia; D I McCloskey
Journal:  J Physiol       Date:  1977-11       Impact factor: 5.182

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