Weill Cornell Medicine
New York, 10065, United States
Location contact
Immanuel Elbau, MD, PhD
PRINCIPAL_INVESTIGATOR
Research Coordinator, Interventional Psychiatry Program
CONTACT
NCT Number: NCT07680153
This study is exploring a new approach to treating depression in people with bipolar disorder (BD). Investigators are testing whether a non-invasive form of brain stimulation can help us understand depressed-to-euthymic mood shifts and their related brain circuits in BD.
Investigators in this study will use a technique called repetitive transcranial magnetic stimulation, or rTMS. It uses non-invasive magnetic pulses delivered to the scalp to stimulate specific areas of the brain. rTMS is already used to treat depression, and investigators are now studying whether it can be made even more effective for people with bipolar disorder by precisely targeting an individualized brain region for each participant. Participants in this study will receive two courses of rTMS, one active and one placebo (called "sham"), in a randomized order so investigators can directly compare the effects. Before treatment, investigators will use brain scans (MRI) to create a personalized map of each participant's brain activity. This lets investigators identify the exact stimulation target most likely to influence the brain circuits involved in BD mood shifts. Investigators will track mood symptoms closely throughout the study to measure what changes.
Investigators believe that depression in BD is partly driven by disrupted communication between two brain regions involved in processing what feels important or rewarding. Investigators want to find out whether rTMS can restore that communication and whether doing so leads to measurable improvements in depression.
Trial opening soon.
Get Notified18 year–70 year
All sexes
Interventional
Phase 4
New York, 10065, United States
Immanuel Elbau, MD, PhD
PRINCIPAL_INVESTIGATOR
Research Coordinator, Interventional Psychiatry Program
CONTACT
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
TANS-guided SAL Acc iTBS approach: Targeted Functional Network Stimulation (TANS) combines precision functional mapping (PFM) with electric field (E-field) modeling to individualize circuit targeting. Active rTMS will be intermittent theta burst simulation (iTBS) delivered to the salience network (SAL) with an accelerated intervention protocol (up to 5 consecutive days of 10 hourly active rTMS sessions).
An Active/Placebo (A/P) sham TMS coil will be used to deliver placebo stimulation. The A/P coil is a double-sided coil in which one side delivers effective magnetic stimulation, while the opposite side is configured to produce a sham condition without inducing cortical activation. Sham stimulation will also be delivered to the salience network (SAL) with an accelerated intervention protocol (up to 5 consecutive days of 10 hourly sham rTMS sessions).
Time frame: Baseline to 1-week post-rTMS
Within-participant difference in change in depression, measured by score on the Montgomery-Asberg Depression Rating Scale (MADRS), in the active intervention phase vs. the sham intervention phase. The minimum MADRS score is 0 and the maximum MADRS score is 60, with higher scores indicating greater depression severity. The primary analysis uses a linear mixed-effects model with fixed effects for time (pre/post), condition (active/sham), intervention phase, and randomization sequence, with a subject-specific random intercept. The primary endpoint is the time × condition interaction, reflecting differential symptom change for active versus sham rTMS.
Time frame: Baseline to 1-week post-rTMS
Within-participant difference in change in salience network functional connectivity (FC) in the active intervention phase vs. the sham intervention phase. Difference will be measured as pre-to-post rTMS change in FC between ventral striatum and anterior cingulate nodes of the salience network, with higher scores indicating greater FC. The secondary analysis also uses a linear mixed-effects model with fixed effects for time (pre/post), condition (active/sham), intervention phase, and randomization sequence, with a subject-specific random intercept. The primary endpoint is the time × condition interaction, reflecting differential change in FC for active versus sham rTMS.
Contact information is provided by the study sponsor or research team.
Weill Medical College of Cornell University
Other
Acronym: CircuitBD
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