Convergent mapping of a tremor treatment network
Abstract
Abstract Tremor occurs in various forms across diverse neurological disorders, including Parkinson’s disease and essential tremor. While clinically heterogeneous, converging evidence suggests a shared brain network may underlie tremor across conditions. Here, we empirically define such a network using four modalities: lesion locations, atrophy patterns, EMG-fMRI, and deep brain stimulation outcomes. We show that network connectivity robustly explains clinical outcomes in independent cohorts undergoing deep brain stimulation of the subthalamic nucleus for Parkinson’s disease and the ventral intermediate nucleus for essential tremor. Maps from each cohort accounted for outcomes in the respective other, supporting a disorder-independent tremor network. A multimodal agreement map revealed consistent substrates in the primary motor cortex and motor cerebellum. To validate the network, we test its predictive power in a third, independent cohort treated with pallidal stimulation for Parkinson’s disease. Our findings define a robust, cross-condition tremor network that may guide both invasive and noninvasive neuromodulation strategies.
Article Details
Authors (22)
Lukas L. Goede
Bassam Al-Fatly
Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin
Ningfei Li
Movement Disorders and Neuromodulation Unit, Department of Neurology, Charité—Universitätsmedizin Berlin
Leon K. Sobesky
Bahne H. Bahners
Center for Brain Circuit Therapeutics, Department of Neurology, Brigham & Women’s Hospital, Harvard Medical School
Patricia Zvarova
Clemens Neudorfer
Center for Brain Circuit Therapeutics, Department of Neurology, Brigham & Women’s Hospital, Harvard Medical School
Martin Reich
Jens Volkmann
Chencheng Zhang
Vincent J. J. Odekerken
Rob M. A. de Bie
Ellen F. P. Younger
Daniel T. Corp
Erik H. Middlebrooks
Juho Joutsa
Michiel Dirkx
Günther Deuschl
Rick C. Helmich
Andrea A. Kühn
Michael D. Fox
Andreas Horn