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Visuomotor processing is altered after peripheral nerve damage in neuralgic amyotrophy

Authors :
Renee Lustenhouwer
Ian G. M. Cameron
Elze Wolfs
Nens van Alfen
Ivan Toni
Alexander C. H. Geurts
Baziel G. M. van Engelen
Jan T. Groothuis
Rick C. Helmich
Source :
Brain Communications, 4, Brain Communications, 4, 1
Publication Year :
2022

Abstract

Contains fulltext : 246951.pdf (Publisher’s version ) (Open Access) Neuralgic amyotrophy is a common peripheral nerve disorder caused by auto-immune inflammation of the brachial plexus, clinically characterized by acute pain and weakness of the shoulder muscles, followed by motor impairment. Despite recovery of the peripheral nerves, patients often have residual motor dysfunction of the upper extremity, leading to persistent pain related to altered biomechanics of the shoulder region. Building on clinical signs that suggest a role for cerebral mechanisms in these residual complaints, here we show and characterize cerebral alterations following neuralgic amyotrophy. Neuralgic amyotrophy patients often develop alternative motor strategies, which suggests that (mal)adaptations may occur in somatomotor and/or visuomotor brain areas. Here we tested where changes in cerebral sensorimotor representations occur in neuralgic amyotrophy, while controlling for altered motor execution due to peripheral neuropathy. We additionally explore the relation between potential cerebral alterations in neuralgic amyotrophy and clinical symptoms. During functional MRI scanning, 39 neuralgic amyotrophy patients with persistent, lateralized symptoms in the right upper extremity and 23 matched healthy participants solved a hand laterality judgment task that can activate sensorimotor representations of the upper extremity, across somatomotor and visuomotor brain areas. Behavioural and cerebral responses confirmed the involvement of embodied, sensorimotor processes across groups. Compared to healthy participants, neuralgic amyotrophy patients were slower in hand laterality judgment, and had decreased cerebral activity specific to their affected limb in two higher-order visual brain regions: the right extrastriate cortex and the parieto-occipital sulcus. Exploratory analyses revealed that across patients, extrastriate activity specific to the affected limb decreased as persistent pain increased, and affected limb-related parieto-occipital activity decreased as imagery performance of the affected limb became slower. These findings suggest that maladaptive cerebral plasticity in visuomotor areas involved in sensorimotor integration plays a role in residual motor dysfunction and subsequent persistent pain in neuralgic amyotrophy. Rehabilitation interventions that apply visuomotor strategies to improve sensorimotor integration may help to treat neuralgic amyotrophy patients. 16 p.

Details

ISSN :
26321297
Database :
OpenAIRE
Journal :
Brain Communications, 4, Brain Communications, 4, 1
Accession number :
edsair.doi.dedup.....af26d82d42af5b81bc23e7d1fa761bb2