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Updated: May 6, 2026

MRI-guided dmPFC-rTMS as a Treatment for Treatment-resistant Major Depressive Disorder
Published on: August 11, 2015
DLPFC rTMS is more effective than sham or orbitofrontal stimulation for smoking cessation and alters frontal brain
Xingbao Li1, Kevin A Caulfield1, Matthew J Carpenter2
1Brain Stimulation Division, Department of Psychiatry, Medical University of South Carolina, Charleston, SC, 29425, United States; Center for Biomedical Imaging, Medical University of South Carolina, Charleston, SC, 29425, United States.
Objective:
Repetitive transcranial magnetic stimulation (rTMS) shows promise for smoking cessation, but its neural mechanisms remain unclear. It is unknown whether rTMS reduces smoking by enhancing executive control or suppressing reward-related brain activity. This study aimed to address this gap by comparing excitatory and inhibitory rTMS targeting distinct cortical circuits implicated in tobacco use disorder (TUD).
Methods:
In a double-blind, sham-controlled design, treatment-seeking individuals with TUD were randomized to 15 sessions of personalized, fMRI-guided, E-field-dosed rTMS: (1) sham rTMS, (2) excitatory 10 Hz rTMS over the left dorsolateral prefrontal cortex (L-DLPFC; 3000 pulses/session), or (3) inhibitory 1 Hz rTMS over the left medial orbitofrontal cortex (L-mOFC; 900 pulses/session). fMRI scans were conducted pre- and post- 15 sessions of rTMS. Primary outcomes were reductions in cigarettes per day (CPD) and changes in blood-oxygen-level-dependent (BOLD) activity.
Results:
Thirty-five of 46 participants completed the study (sham = 9; 10 Hz L-DLPFC = 12; 1 Hz L-mOFC = 14). The 10 Hz L-DLPFC group showed a significantly greater CPD reduction than 1 Hz L-mOFC and sham (-11.14 vs. -4.92 and -6.43, respectively; p < 0.0001, partial η2 = 0.135). rTMS to the L-DLPFC also increased prefrontal activity and decreased orbitofrontal activity (p < 0.05), with the degrees of CPD reduction correlating with enhanced activation in L-DLPFC (p < 0.05).
Conclusions:
Enhancing executive control via 10 Hz rTMS over the L-DLPFC was more effective for smoking reduction than suppressing reward circuitry with 1 Hz rTMS over the L-mOFC. Findings suggest that strengthening prefrontal regulation of reward processing is a key mechanism by which rTMS promotes smoking cessation.
Trial Registration:
clinicaltrials.gov Identifier: NCT04903028.
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