UCSD Interventional Psychiatry
San Diego, California, 92127, United States
NCT Number: NCT06730841
This study aims to evaluate the feasibility, safety, and tolerability of an innovative approach to treating Major Depressive Disorder (MDD), particularly in cases where patients have not responded well to traditional therapies. Specifically, the objective is to evaluate the antidepressant effects of a Dose-Optimized and Spaced Transcranial Direct Current Stimulation (DOS-tDCS) protocol in participants with treatment-resistant depression (TRD) compared to spaced tDCS only and sham tDCS in a 3-arm randomized controlled trial (RCT). The proposed method involves applying low-intensity electrical currents through the scalp in a manner that is both more intense and more frequently spaced than standard treatments. This approach is hypothesized to lead to a significant reduction in depressive symptoms. Participants in the study will be randomly assigned to one of three groups: the experimental group receiving the DOS-tDCS treatment, a group receiving spaced tDCS only, or a control group receiving a sham (placebo) treatment. Outcomes will be measured over a period of six weeks. The study's goal is to offer a potentially more accessible and effective treatment option for individuals who have not benefited from existing MDD therapies.
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Notify Me18 year–85 year
All sexes
Interventional
Not applicable
San Diego, California, 92127, United States
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
In order to be eligible to participate in this study, an individual must meet all of the following criteria:
Exclusion criteria
An individual will be excluded from participation in this study if they meet any of the following criteria, as determined from a review of medical records prior to screening or at the screening visit:
tDCS, a non-invasive neuromodulation technique that applies low-intensity, direct electrical stimulation to the cortex via scalp electrodes, has been extensively researched as a potential treatment for MDD. tDCS enhances neuroplasticity, which is theorized to be responsible for its therapeutic effects and has been presented as a cost-effective solution for MDD. Preclinical evidence supports the potential advantage of spaced stimulation with tDCS to maximally engage neuroplasticity. This group will be treated using a stimulation intensity of up to 4 milliamp (mA).
Participants will first complete an acute intensive induction phase consisting of daily treatment every weekday over 2 weeks (10 days total) followed by a consolidation phase consisting of weekly treatments (once a week) over 4 additional weeks (6 weeks total).
Other names: tDCS, Soterix Medical 1x1 CT
tDCS, a non-invasive neuromodulation technique that applies low-intensity, direct electrical stimulation to the cortex via scalp electrodes, has been extensively researched as a potential treatment for MDD. tDCS enhances neuroplasticity, which is theorized to be responsible for its therapeutic effects and has been presented as a cost-effective solution for MDD. Preclinical evidence supports the potential advantage of spaced stimulation with tDCS to maximally engage neuroplasticity. This group will be treated using a stimulation intensity of 2 mA.
Participants will first complete an acute intensive induction phase consisting of daily treatment every weekday over 2 weeks (10 days total) followed by a consolidation phase consisting of weekly treatments (once a week) over 4 additional weeks (6 weeks total).
Other names: Soterix Medical 1x1 CT
tDCS, a non-invasive neuromodulation technique that applies low-intensity, direct electrical stimulation to the cortex via scalp electrodes, has been extensively researched as a potential treatment for MDD. tDCS enhances neuroplasticity, which is theorized to be responsible for its therapeutic effects and has been presented as a cost-effective solution for MDD. This group will be treated using sham stimulation.
Participants will first complete an acute intensive induction phase consisting of daily treatment every weekday over 2 weeks (10 days total) followed by a consolidation phase consisting of weekly treatments (once a week) over 4 additional weeks (6 weeks total).
Other names: Soterix Medical 1x1 CT
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
Recruitment rate will be measured as the number of patients enrolled by the conclusion of the study, reported as a whole number.
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
Retention rate will be measured as the percentage of enrolled patients who complete all study visits, reported as a percentage.
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
The proportion of completed sessions relative to the total prescribed sessions, expressed as a percentage.
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
Safety will be measured by the number of serious adverse events (SAEs).
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
Tolerability will be measured by the number of adverse events (AEs).
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EMG will be used to evaluate changes in SICI.
Unit of Measurement: Amplitude or percentage inhibition.
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EMG will be used to evaluate changes in intracortical facilitation
Unit of Measurement: Amplitude or percentage facilitation.
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EMG will be used to assess changes in the cortical silent period (CSP).
Unit of Measurement: Duration (milliseconds).
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EEG will be used to evaluate changes in TMS-evoked potential (TEP) component amplitudes.
Unit of Measurement: Voltage (µV).
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EEG will be used to evaluate changes in significant current density (SCD).
Unit of Measurement: Current density (A/m²).
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
TMS-EEG will be used to evaluate changes in significant current scattering (SCS).
Unit of Measurement: Scattering coefficient (unitless).
Time frame: From baseline neurophysiological assessment prior to treatment, to during treatment, to 6 weeks after first treatment.
rsEEG will be used to analyze changes in brain activity patterns at rest.
Unit of Measurement: Frequency (Hz) and amplitude (µV).
Time frame: From baseline clinical assessment prior to treatment, to 6 weeks after first treatment.
Changes in depressive symptoms will be assessed using the Montgomery-Åsberg Depression Rating Scale (MADRS), which ranges from 0 to 60, with higher scores indicating more severe depression. A decrease in the MADRS score will be interpreted as an improvement in symptoms.
University of California, San Diego
Other
Acronym: DOS
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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