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Parietal network underlying movement control: disturbances during subcortical electrostimulation
Authors:Fabien Almairac  Guillaume Herbet  Sylvie Moritz-Gasser  Hugues Duffau
Affiliation:1. Department of Neurosurgery, University Hospital of Nice, H?pital Pasteur, Pavillon G, Avenue de la Voie Romaine, 06000, Nice, France
2. Department of Neurosurgery, Montpellier University Medical Center, H?pital Gui de Chauliac, Montpellier, France
4. INSERM U1051, Team “Plasticity of the central nervous system, human stem cells, and glial tumors”, Institute for Neurosciences of Montpellier, Montpellier University Medical Center, Montpellier, France
3. Department of Neurology, Montpellier University Medical Center, H?pital Gui de Chauliac, Montpellier, France
Abstract:Our understanding of brain movement control has changed over the last two decades. Recent findings in the monkey and in humans have led to a parallel and interconnected network. Nevertheless, little is known about these networks. Here, we present two cases of patients with a parietal low-grade glioma. They underwent surgery under local anesthesia with cortical and subcortical mapping. For patient 1, subcortical electrostimulation immediately posterior to thalamocortical fibers induced movement disorders, with an inhibition of leg and arm movements medially and, more laterally, an acceleration of arm movement. For patient 2, electrostimulation of white matter immediately posterior to thalamocortical fibers induced an inhibition of both arm movement. It means that the detected fibers in the parietal lobe may be involved in the motor control modulation. They are distributed veil-like immediately posterior to thalamocortical pathways and could correspond to a fronto-parietal movement control subnetwork. These two cases highlight the major role of the subcortical connectivity in movement regulation, involving parietal lobe, thus the necessity to be identified and preserved during brain surgery.
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