Shared pathway-specific network mechanisms of dopamine and deep brain stimulation for the treatment of Parkinson’s disease

T Thomas S. Binns R Richard M. Köhler J Jojo Vanhoecke M Meera Chikermane M Moritz Gerster T Timon Merk F Franziska Pellegrini J Johannes L. Busch J Jeroen G. V. Habets A Alessia Cavallo J Jean-Christin Beyer B Bassam Al-Fatly (Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin) N Ningfei Li (Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin) A Andreas Horn P Patricia Krause K Katharina Faust G Gerd-Helge Schneider S Stefan Haufe A Andrea A. Kühn W Wolf-Julian Neumann

Abstract

Abstract Deep brain stimulation is a brain circuit intervention that can modulate distinct neural pathways for the alleviation of neurological symptoms in patients with brain disorders. In Parkinson’s disease, subthalamic deep brain stimulation clinically mimics the effect of dopaminergic drug treatment, but the shared pathway mechanisms on cortex – basal ganglia networks are unknown. To address this critical knowledge gap, we combined fully invasive neural multisite recordings in patients undergoing deep brain stimulation surgery with normative MRI-based whole-brain connectomics. Our findings demonstrate that dopamine and stimulation exert distinct mesoscale effects through modulation of local neural population activity. In contrast, at the macroscale, stimulation mimics dopamine in its suppression of excessive interregional network synchrony associated with indirect and hyperdirect cortex – basal ganglia pathways. Our results provide a better understanding of the circuit mechanisms of dopamine and deep brain stimulation, laying the foundation for advanced closed-loop neurostimulation therapies.

Article Details

Volume / Issue Vol. 16, Issue 1
Published April 15, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (20)

T

Thomas S. Binns

R

Richard M. Köhler

J

Jojo Vanhoecke

M

Meera Chikermane

M

Moritz Gerster

T

Timon Merk

F

Franziska Pellegrini

J

Johannes L. Busch

J

Jeroen G. V. Habets

A

Alessia Cavallo

J

Jean-Christin Beyer

B

Bassam Al-Fatly

Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin

N

Ningfei Li

Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin

A

Andreas Horn

P

Patricia Krause

K

Katharina Faust

G

Gerd-Helge Schneider

S

Stefan Haufe

A

Andrea A. Kühn

W

Wolf-Julian Neumann