Subthalamic DBS does not restore deficits in corticospinal suppression during movement preparation in Parkinson's disease

Jan 1, 2024·
Emmanuelle WILHELM
,
Gérard DEROSIERE
,
Caroline QUOILIN
,
Inci Cakiroglu
,
Susana Paço
,
Christian Raftopoulos
,
Bart Nuttin
Julie DUQUE
Julie DUQUE
· 0 min read
Abstract
Research study on subthalamic deep brain stimulation alleviates motor symptoms without restoring deficits in corticospinal suppression during movement preparation in parkinson’s disease
Type
Publication
Clinical Neurophysiology
publications
Authors
MD, PhD Student
Emmanuelle is a MD (Neurology Assistant Doctor) who, during her medicine studies at the Université catholique de Louvain, joined the CoActions lab as a research student (2012 - 2016). Over that time, she worked on preparatory motor inhibition, mainly in alcohol-dependent patients, but also helped to develop a new double-coil TMS method. She started her PhD thesis in October 2016. Her goal was to investigate the role of the basal ganglia in motor inhibition, working with medically treated and DBS (Deep Brain Stimulation) treated Parkinson’s patients.
Authors
Independent researcher at INSERM Lyon since 2022, focusing on neural mechanisms underlying motivation, decision-making, and apathy. Previously spent seven years as a postdoctoral researcher in the CoActions Lab investigating neural bases of motor decisions. Still affiliated as visiting researcher collaborating on multiple projects.
Authors
PhD, Post-Doctoral Researcher
Caroline completed a PhD in Psychological Sciences at the University of Liege as well as a postdoctoral fellowship at the department of Addiction Neuroscience of the University-Purdue Indianapolis University, where her research focused on the developmental and neurobiological bases of alcohol abuse and dependence. Caroline joined the CoActions lab in July 2014 and, since then, has been mainly investigating the contribution of deficient motor inhibitory mechanisms in addiction, and especially in alcohol-dependence.
Julie DUQUE
Authors
Full Professor, Head of the CoActions Lab
Research broadly explores a range of questions pertaining to the cognitive neuroscience of human behavior. Conduct experiments to explore the interaction between cognition and action in neurologically healthy and impaired individuals. Use a variety of techniques to characterize the functional role of different parts of the motor pathways, including transcranial magnetic stimulation (TMS), functional and structural magnetic resonance imaging (MRI), and electroencephalography (EEG). Recent research investigates the role of the locus coeruleus in various aspects of action control, including reaching movement control, decision making, and behavioral vigor, using transcutaneous vagus nerve stimulation (tVNS) to causally probe this neuromodulatory system. More →