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Bogus Visual Feedback Alters Onset of Movement-Evoked Pain in People With Neck Pain
Author(s) -
Daniel S. Harvie,
Markus Broecker,
Ross Smith,
Ann Meulders,
Victoria J. Madden,
G. Lorimer Moseley
Publication year - 2015
Publication title -
psychological science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 3.641
H-Index - 260
eISSN - 1467-9280
pISSN - 0956-7976
DOI - 10.1177/0956797614563339
Subject(s) - proprioception , psychology , perception , sensory system , physical medicine and rehabilitation , visual perception , sensory cue , rotation (mathematics) , movement (music) , audiology , cognitive psychology , neuroscience , medicine , computer vision , computer science , philosophy , aesthetics
Pain is a protective perceptual response shaped by contextual, psychological, and sensory inputs that suggest danger to the body. Sensory cues suggesting that a body part is moving toward a painful position may credibly signal the threat and thereby modulate pain. In this experiment, we used virtual reality to investigate whether manipulating visual proprioceptive cues could alter movement-evoked pain in 24 people with neck pain. We hypothesized that pain would occur at a lesser degree of head rotation when visual feedback overstated true rotation and at a greater degree of rotation when visual feedback understated true rotation. Our hypothesis was clearly supported: When vision overstated the amount of rotation, pain occurred at 7% less rotation than under conditions of accurate visual feedback, and when vision understated rotation, pain occurred at 6% greater rotation than under conditions of accurate visual feedback. We concluded that visual-proprioceptive information modulated the threshold for movement-evoked pain, which suggests that stimuli that become associated with pain can themselves trigger pain.

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