The contribution of executive control dysfunction to freezing of gait in Parkinson's disease.

Attention Network Test (ANT) Electroencephalography (EEG) Freezing of gait (FoG) Parkinson’s disease (PD) Step initiation

Journal

Clinical neurophysiology : official journal of the International Federation of Clinical Neurophysiology
ISSN: 1872-8952
Titre abrégé: Clin Neurophysiol
Pays: Netherlands
ID NLM: 100883319

Informations de publication

Date de publication:
08 2023
Historique:
received: 22 12 2022
revised: 16 03 2023
accepted: 06 05 2023
medline: 21 7 2023
pubmed: 26 6 2023
entrez: 25 6 2023
Statut: ppublish

Résumé

An executive dysfunction is supposed to contribute to freezing of gait (FoG) in Parkinson's disease. We aimed to investigate at a behavioral and cortical levels whether an attentional load (particularly, a conflicting situation) can specifically impact preparation and execution phases of step initiation in parkinsonian patients with FoG. Fifteen patients with FoG, 16 without and 15 controls performed an adapted version of the Attention Network Test, with step initiation as response instead of the standard manual keypress. Kinetic and kinematic features of gait initiation as well as high-resolution electroencephalography were recorded during the task. Patients with FoG presented an impaired executive control. Step execution time was longer in parkinsonian patients. However, the executive control effect on step execution time was not different between all groups. Compared to patients, controls showed a shorter step initiation-locked alpha desynchronization, and an earlier, more intense and shorter beta desynchronization over the sensorimotor cortex. Even though controls were faster, the induced alpha and beta activity associated with the effect of executive control didn't differ between patients and controls. Tasks of conflict resolution lead to a comparable alteration of step initiation and its underlying brain activity in all groups. Links between executive control, gait initiation and FoG seem more complex than expected. This study questions the cognitive hypothesis in the pathophysiology of freezing of gait. Executive dysfunction is associated with FoG but is not the main causal mechanism since the interaction between attention and motor preparation didn't provoke FoG.

Identifiants

pubmed: 37356311
pii: S1388-2457(23)00636-3
doi: 10.1016/j.clinph.2023.05.010
pii:
doi:

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

75-89

Informations de copyright

Copyright © 2023 International Federation of Clinical Neurophysiology. Published by Elsevier B.V. All rights reserved.

Auteurs

Madli Bayot (M)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Clinical Neurophysiology, F-59000 Lille, France. Electronic address: madli.bayot@gmail.com.

Kathy Dujardin (K)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Neurology and Movement Disorders, F-59000 Lille, France. Electronic address: kathy.dujardin@univ-lille.fr.

Morgane Gérard (M)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Clinical Neurophysiology, F-59000 Lille, France. Electronic address: morgane.gerard@chru-lille.fr.

Aurore Braquet (A)

Médipôle Lyon-Villeurbanne, France. Electronic address: aurore.braquet@gmail.com.

Céline Tard (C)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Neurology and Movement Disorders, F-59000 Lille, France. Electronic address: celine.tard@chru-lille.fr.

Nacim Betrouni (N)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Clinical Neurophysiology, F-59000 Lille, France. Electronic address: nacim.betrouni@inserm.fr.

Luc Defebvre (L)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Neurology and Movement Disorders, F-59000 Lille, France. Electronic address: luc.defebvre@chru-lille.fr.

Arnaud Delval (A)

Univ. Lille, Inserm, CHU Lille, U1172 - LilNCog - Lille Neuroscience & Cognition, Department of Clinical Neurophysiology, F-59000 Lille, France. Electronic address: arnaud.delval@chru-lille.fr.

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Classifications MeSH