University of Wisconsin - Madison
Madison, Wisconsin, 53706, United States
NCT Number: NCT07752745
This study is to find out whether and how a type of non-invasive electrical brain stimulation called transcranial electrical stimulation with temporal interference (TES-TI) can temporarily change brain activity in healthy adults. A structural MRI scan will be used to customize where the stimulation electrodes are placed for each participant to deliver TES-TI during three afternoon sessions at rest with eyes closed. Brain activity is recorded with high-density EEG. Up to 24 participants will be enrolled and on study for 3 to 12 weeks.
Trial opening soon.
Get Notified18 year–50 year
All sexes
Interventional
Not applicable
Madison, Wisconsin, 53706, United States
This is an experimental study using a within-subject, single-blind, randomized, counterbalanced crossover design in which each participant serves as their own control. Healthy adults will complete (or provide an existing) structural MRI scan (T1/T2) to support individualized electric-field modeling and personalized montage optimization for thalamic targeting, followed by three afternoon stimulation sessions with simultaneous high-density EEG during eyes-closed wakefulness; sessions will be scheduled on separate days at least one week apart. Each session includes four stimulation conditions administered in randomized/counterbalanced order, with each condition consisting of a fixed 3-minute pre-stimulation baseline, 3-minute stimulation period, and 3-minute post-stimulation recording to enable STIM-PRE and POST-PRE comparisons.
Primary Objectives:
Secondary Objectives:
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
4 conditions per session. Each condition will follow a standardized block structure consisting of 3 minutes pre-stimulation baseline, 3 minutes stimulation, and 3 minutes post-stimulation recording (PRE, STIM, POST)
Other names: mTI, transcranial electrical stimulation, High-Density Electroencephalography
Time frame: data collected for 3 minutes prior to stimulation and 3 minutes during stimulation for each of 4 conditions during Session A (approximately 3 hours long)
Change in band-limited, topography-resolved EEG spectral power during stimulation (STIM-PRE) for in-phase mTI compared to SHAM, HF control, and the mixed unipolar+HF condition.
Time frame: data collected for 3 minutes prior to stimulation and 3 minutes during stimulation for each of 4 conditions during Session B (approximately 3 hours long)
Change in band-limited, topography-resolved EEG spectral power during stimulation (STIM-PRE) for in-phase mTI compared to unipolar TES-TI at 5 mA, and 8 mA, relative to SHAM.
Time frame: data collected for 3 minutes prior to stimulation and 3 minutes during stimulation for each of 4 conditions during Session C (approximately 3 hours long)
Change in band-limited, topography-resolved EEG spectral power during stimulation (STIM-PRE) for in-phase mTI at 10 Hz, 50 Hz, and 130 Hz, relative to SHAM.
Time frame: data collected for 3 minutes prior to stimulation and 3 minutes post stimulation for each of 4 conditions during each of 3 sessions (each session is approximately 3 hours long, with at least one week between sessions)
Change in band-limited, topography-resolved EEG spectral power in the post-stimulation interval (POST-PRE) across all tested conditions (in-phase mTI, mixed unipolar+HF, HF control, unipolar 5 mA, unipolar 8 mA; and 10/50/130 Hz where applicable), each evaluated relative to SHAM.
Contact information is provided by the study sponsor or research team.
University of Wisconsin, Madison
Other
Acronym: MINT
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