The purpose of this research study is to use a specific type of non-invasive brain stimulation known as transcranial alternating current stimulation (tACS) to determine its effects on brain activity (measured with EEG) and mood in patients with Major Depressive Disorder (MDD).
The device used for non-invasive brain stimulation is investigational and has not been approved by the FDA, though it has been designated as a nonsignificant risk (NSR) device study by the FDA. Half of the participants will receive tACS and half will receive sham stimulation, an inactive control procedure for comparison use only. Participation in this study includes up to eight appointments, each one lasting from 30 minutes to four hours over the course of 3 weeks. The first two appointments will be remote interviews to determine eligibility. If the subjects qualify, the next five appointments will be scheduled as consecutive stimulation sessions in the Carolina Center for Neurostimulation at the Vilcom office. The follow-up appointment will be in our center two weeks after the completion of the stimulation sessions. We estimate the total time needed to complete study participation to be about 17 hours.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
QUADRUPLE
Enrollment
20
UNC at Vilcom Center
Chapel Hill, North Carolina, United States
Change in the Amplitude of Left Frontal Alpha Oscillations Measured Durin Resting-state EEG Recordings From Baseline to Day 5 of Stimulation.
Fourier transform is applied to 2 second epochs of resting-state EEG data and averaged across epochs. The amplitude of alpha oscillations is calculated and averaged across left frontal electrodes. The difference between the baseline recording on the first day of stimulation is compared to the recording on the fifth day of the intervention prior to stimulation.
Time frame: Baseline, Day 5
Change in the Amplitude of Left Frontal Alpha Oscillations Measured During Resting-state EEG Recordings From Baseline to Two-week Follow-up of Stimulation.
Fourier transform is applied to 2 second epochs of resting-state EEG data and averaged across epochs. The amplitude of alpha oscillations is calculated and averaged across left frontal electrodes. The difference between the baseline recording on the first day of stimulation is compared to the recording on the two-week follow-up after intervention.
Time frame: Baseline, two-week follow-up visit
Correlation Between Changes in the Amplitude of Left Frontal Alpha Oscillations From Baseline to Day 5 of Intervention and Changes in Symptoms of Depression.
Correlation Coefficient (r) will be used to determine if there is a relationship between the change in Hamilton Depression Rating Scale (HDRS) scores from baseline to Day 5 and the two-week follow up and change in the amplitude of left frontal alpha oscillations before stimulation at baseline and Day 5 of stimulation. The HDRS is a clinician-rated measure of depression severity where higher scores indicate greater depression severity. To calculate the amplitude of left frontal alpha oscillations, Fourier transform is applied to 2 second epochs of resting-state EEG data and averaged across epochs. The amplitude of alpha oscillations is calculated and averaged across left frontal electrodes.
Time frame: Baseline, Day 5
Correlation Between Changes in the Amplitude of Left Frontal Alpha Oscillations From Baseline to Two-week Follow-up and Depression Symptoms.
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.
Correlation Coefficient (r) will be used to determine if there is a relationship between the change in Hamilton Depression Rating Scale (HDRS) scores from baseline, Day 5 and to two-week follow up and change in the amplitude of left frontal alpha oscillations before stimulation at baseline and Day 5 of stimulation. The HDRS is a clinician-rated measure of depression severity where higher scores indicate greater depression severity. To calculate the amplitude of left frontal alpha oscillations, Fourier transform is applied to 2 second epochs of resting-state EEG data and averaged across epochs. The amplitude of alpha oscillations is calculated and averaged across left frontal electrodes.
Time frame: Baseline, two-week follow-up visit