Purpose

The goal of this clinical trial is to learn whether two forms of one-day accelerated transcranial magnetic stimulation (TMS) can reduce depressive symptoms in adults with treatment-resistant depression. Treatment-resistant depression is depression that has not improved enough after at least two adequate antidepressant medication treatments. TMS is a non-invasive treatment that uses magnetic pulses to stimulate specific areas of the brain. The main questions this study aims to answer are: - Does continuous theta-burst stimulation (cTBS) targeting the precuneus reduce depressive symptoms 4 weeks after treatment compared with sham stimulation? - Does intermittent theta-burst stimulation (iTBS) targeting the left dorsolateral prefrontal cortex reduce depressive symptoms 4 weeks after treatment compared with sham stimulation? Researchers will compare precuneus cTBS, left dorsolateral prefrontal cortex iTBS, and sham stimulation to determine whether either active treatment reduces depressive symptoms more than sham stimulation. Participants will be randomly assigned to one of the three groups and will not be told which treatment they initially receive. Participants will: - Complete screening procedures and baseline assessments of depression, rumination, and cognitive function - Receive 20 sessions of active or sham TMS during one in-person study day - Complete follow-up assessments 1, 2, 3, and 4 weeks after the intervention - Report any side effects or medical problems experienced during the study Participants initially assigned to sham stimulation may choose to receive active TMS after completing the 4-week follow-up period. Those who choose this option will receive either precuneus cTBS or left dorsolateral prefrontal cortex iTBS and will complete additional follow-up assessments.

Conditions

Eligibility

Eligible Ages
Over 18 Years
Eligible Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Age 18 years or older. - Able to speak, read, and understand English sufficiently to complete the study assessments and provide informed consent independently. - Diagnosis of major depressive disorder according to DSM-5-TR criteria, confirmed by a qualified physician. - Treatment-resistant depression, defined as an inadequate response to at least two adequate trials of antidepressant pharmacotherapy. - Patient Health Questionnaire-9 (PHQ-9) total score of 10 or higher.

Exclusion Criteria

  • Any condition identified through TMS safety screening that, in the judgment of a study physician, presents an unacceptable safety risk for TMS. Such conditions may include: - A history of a serious adverse reaction during TMS treatment. - A history of seizure. - A history of stroke. - A history of serious head injury or neurosurgery. - Metal in the head outside the mouth, such as shrapnel, surgical clips, or metal fragments. - An implanted device, such as a cardiac pacemaker, cochlear implant, medical pump, or intracardiac line. - Frequent or severe headaches. - Another brain-related condition or an illness that caused brain injury. - A family history of epilepsy. - Permanent tattoos on the head or neck. - Current recreational drug use. - Current pregnancy or possible pregnancy. - Use of a medication or combination of medications, a recent medication change, or medication withdrawal that, in the judgment of a study physician, presents an unacceptable safety risk, including a clinically significant increase in seizure risk. - Current or lifetime diagnosis of bipolar I disorder, bipolar II disorder, a schizophrenia spectrum disorder, or another primary psychotic disorder. - Active suicidal ideation with intent or plan requiring immediate clinical intervention, or another acute safety concern that cannot be safely managed within the study.

Study Design

Phase
N/A
Study Type
Interventional
Allocation
Randomized
Intervention Model
Parallel Assignment
Intervention Model Description
During the randomized, sham-controlled phase, participants are assigned in parallel in a 1:1:1 ratio to precuneus cTBS, left dlPFC iTBS, or sham stimulation. After completion of the 4-week randomized phase, participants initially assigned to sham may enter an optional open-label extension and are randomized in a 1:1 ratio to precuneus cTBS or left dlPFC iTBS.
Primary Purpose
Treatment
Masking
Single (Participant)
Masking Description
Participants are masked to treatment assignment during the randomized, sham-controlled phase. The Principal Investigator, who administers TMS and conducts clinical outcome assessments, is not masked to treatment assignment. The designated study team member responsible for randomization is also not masked. Other study personnel, including study physicians, are not informed of treatment assignment during the randomized phase. Masking does not apply to the optional open-label extension.

Arm Groups

ArmDescriptionAssigned Intervention
Experimental
Precuneus cTBS
Participants receive 20 sessions of active continuous theta-burst stimulation (cTBS) targeting the Pz location of the international 10-20 EEG system during a single day. Stimulation is delivered using a double-cone coil at 80% of the participant's resting motor threshold. Each session consists of 600 pulses delivered over approximately 40 seconds, for a total of 12,000 pulses. Session onsets are separated by approximately 30 minutes. If stimulation at 80% of resting motor threshold is not tolerated, the intensity may be reduced to the highest tolerable level.
  • Device: Precuneus-targeted continuous theta-burst stimulation
    Active continuous theta-burst stimulation is delivered to the Pz location of the international 10-20 EEG system to target the precuneus. Stimulation is administered with a double-cone coil at 80% of the participant's resting motor threshold. Each session consists of 600 pulses delivered over approximately 40 seconds. Participants receive 20 sessions during a single day, for a total of 12,000 pulses, with session onsets separated by approximately 30 minutes. If 80% of resting motor threshold is not tolerated, the intensity may be reduced to the highest tolerable level.
    Other names:
    • Precuneus cTBS
    • Continuous theta-burst stimulation
Experimental
Left dlPFC iTBS
Participants receive 20 sessions of active intermittent theta-burst stimulation (iTBS) targeting the left dorsolateral prefrontal cortex during a single day. The target is identified using the Beam F3 method, and stimulation is delivered using a figure-of-eight coil at 80% of the participant's resting motor threshold. Each session consists of 600 pulses delivered over approximately 3 minutes, for a total of 12,000 pulses. Session onsets are separated by approximately 30 minutes. If stimulation at 80% of resting motor threshold is not tolerated, the intensity may be reduced to the highest tolerable level.
  • Device: Left dorsolateral prefrontal cortex intermittent theta-burst stimulation
    Active intermittent theta-burst stimulation is delivered to the left dorsolateral prefrontal cortex. The stimulation target is identified using the Beam F3 method. Stimulation is administered with a figure-of-eight coil at 80% of the participant's resting motor threshold. Each session consists of 600 pulses delivered over approximately 3 minutes. Participants receive 20 sessions during a single day, for a total of 12,000 pulses, with session onsets separated by approximately 30 minutes. If 80% of resting motor threshold is not tolerated, the intensity may be reduced to the highest tolerable level.
    Other names:
    • Left dlPFC iTBS
    • Intermittent theta-burst stimulation
Sham Comparator
Sham TMS
Participants receive 20 sessions of sham TMS at the left dorsolateral prefrontal cortex location identified using the Beam F3 method during a single day. A figure-of-eight coil is inverted so that the active surface faces away from the scalp. The device is operated at 80% of the participant's resting motor threshold, and sham stimulation follows the same stimulation pattern and approximate 3-minute duration as active iTBS. Session onsets are separated by approximately 30 minutes. After completing the Week 4 assessment, participants may enter an optional open-label extension and are randomized to receive active precuneus cTBS or left dlPFC iTBS.
  • Device: Sham transcranial magnetic stimulation
    Sham transcranial magnetic stimulation is administered at the left dorsolateral prefrontal cortex location identified using the Beam F3 method. A figure-of-eight coil is inverted so that the active surface faces away from the scalp. The stimulator is operated at 80% of the participant's resting motor threshold using the same intermittent theta-burst timing and approximate session duration as the active left dorsolateral prefrontal cortex intervention. Participants receive 20 sham sessions during a single day, with session onsets separated by approximately 30 minutes.
    Other names:
    • Sham TMS
    • Sham intermittent theta-burst stimulation

Recruiting Locations

More Details

Status
Recruiting
Sponsor
Mclean Hospital

Study Contact

Hakjoo Kim Kim, Ph.D.
979-777-0679
khj213@gmail.com

Detailed Description

Treatment-resistant depression may involve dysfunction across distributed brain networks rather than a disturbance confined to a single brain region. The precuneus is a posterior hub of the default mode network and is involved in internally directed and self-referential processing. Altered interactions among the default mode, affective, and cognitive control networks have been implicated in depressive symptoms and rumination. In this study, precuneus continuous theta-burst stimulation (cTBS) is conceptualized as a hypothesis-driven network intervention that may modulate precuneus-centered network interactions implicated in depression. A double-cone coil will be used to increase electric-field penetration toward the medial posteromedial cortex beneath the Pz scalp location of the international 10-20 electroencephalography system. Intermittent theta-burst stimulation (iTBS) of the left dorsolateral prefrontal cortex is included as an additional active treatment arm because this region is an established stimulation target for depression treatment. The three-arm design allows the novel precuneus target and the established left dorsolateral prefrontal cortex target to be evaluated within the same accelerated treatment framework and compared with sham stimulation. Participants will be assigned to the three initial study groups using the minimal sufficient balance (MSB) randomization method, with sex and baseline depression severity, as measured by the Montgomery-Åsberg Depression Rating Scale, used as balancing factors. The target allocation ratio for the randomized, sham-controlled phase will be 1:1:1. Group allocation will be concealed from participants. Each active or sham intervention will consist of 20 stimulation sessions administered during a single day, with session onsets separated by approximately 30 minutes. The primary efficacy analyses will use a longitudinal mixed-model framework to estimate treatment effects and evaluate the two prespecified active-versus-sham comparisons. The familywise type I error rate will be controlled across these two comparisons. The direct comparison between precuneus cTBS and left dorsolateral prefrontal cortex iTBS will be considered exploratory. After completing the 4-week follow-up period, participants initially assigned to sham stimulation may elect to enter an open-label active TMS extension. Extension participants will be assigned to precuneus cTBS or left dorsolateral prefrontal cortex iTBS using the MSB method, with a target allocation ratio of 1:1. Sex and depression severity at the end of the sham-controlled phase, as measured by the Week 4 Montgomery-Åsberg Depression Rating Scale score, will be used as balancing factors. Because only a subset of participants assigned to sham stimulation is expected to enter the extension, extension analyses will be considered exploratory and hypothesis-generating.

Notice

Study information shown on this site is derived from ClinicalTrials.gov (a public registry operated by the National Institutes of Health). The listing of studies provided is not certain to be all studies for which you might be eligible. Furthermore, study eligibility requirements can be difficult to understand and may change over time, so it is wise to speak with your medical care provider and individual research study teams when making decisions related to participation.