Literature DB >> 30746786

The nociceptive withdrawal reflex of the trunk is organized with unique muscle receptive fields and motor strategies.

Hugo Massé-Alarie1,2, Sauro E Salomoni1, Paul W Hodges1.   

Abstract

Noxious stimuli induce a nociceptive withdrawal reflex (NWR) to protect the tissue from injury. Although the NWR was once considered as a stereotyped response, previous studies report distinct responses depending on the stimulation site and context for limbs. We aimed to determine whether noxious stimuli over the trunk produced adaptable complex NWR. We hypothesized that organization of the NWR of the trunk muscle would vary with the site of noxious input and would differ between body and spine postures, which modify the potential for specific muscles to remove threat. Fourteen participants were tested in sitting and three lumbar spine postures in side lying (neutral, flexion and extension). Noxious electrical stimuli were applied over the sacrum, spinous process of L3 and T12, lateral side of the 8th rib and anterior midline. NWR latency and amplitude were recorded with surface electromyography (EMG) electrodes over different trunk muscles. Distinct patterns of muscle activation depended on the stimulation site and were consistent with motor strategies needed to withdraw from the noxious stimuli. The NWR pattern differed between body positions, with less modulation observed in sitting than side lying. Spine posture did not affect the NWR organisation. Our results suggest the circuits controlling trunk muscle NWR presents with adaptability as a function of stimulation site and body position by utilizing the great complexity of the trunk muscle system to produce an efficient protective response. This suggests that the central nervous system (CNS) uses multiple adaptable strategies that are unique depending on which context the noxious stimuli are applied.
© 2019 Federation of European Neuroscience Societies and John Wiley & Sons Ltd.

Entities:  

Keywords:  neural networks; noxious stimulation; protective reflex; sensorimotor processing; trunk motor control

Year:  2019        PMID: 30746786     DOI: 10.1111/ejn.14369

Source DB:  PubMed          Journal:  Eur J Neurosci        ISSN: 0953-816X            Impact factor:   3.386


  3 in total

1.  Unsupervised Machine Learning on Motion Capture Data Uncovers Movement Strategies in Low Back Pain.

Authors:  Anastasia V Keller; Abel Torres-Espin; Thomas A Peterson; Jacqueline Booker; Conor O'Neill; Jeffrey C Lotz; Jeannie F Bailey; Adam R Ferguson; Robert P Matthew
Journal:  Front Bioeng Biotechnol       Date:  2022-04-14

2.  Tempo-spatial integration of nociceptive stimuli assessed via the nociceptive withdrawal reflex in healthy humans.

Authors:  Mauricio Carlos Henrich; Ken Steffen Frahm; Ole Kæseler Andersen
Journal:  J Neurophysiol       Date:  2021-06-30       Impact factor: 2.974

3.  Spinal spatial integration of nociception and its functional role assessed via the nociceptive withdrawal reflex and psychophysical measures in healthy humans.

Authors:  Mauricio Carlos Henrich; Ken Steffen Frahm; Ole Kaeseler Andersen
Journal:  Physiol Rep       Date:  2020-11
  3 in total

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