While people are reading, talking or playing computer games, their brain cells elicit electrical signals so they could perform these actions. The firing of these cells is not random but is organized in a temporal pattern, such that a group of cells are simultaneously active at a particular frequency. The researchers can read the frequency of brain signals and identify their location using different brain-imaging tools like EEG and fMRI. These methods are applied to healthy individuals and do not pose any danger. The investigators of this project would like to use these techniques to study the brain signals, while healthy participants are making the decisions choosing between 2 rewards, e.g., 2 food items. Participants who have depression show different behavior while performing decision-making tasks and the investigation of processes that underlie them will lead to a better understanding of this disease. Furthermore, there is another category of tools, which help to study the brain. This category includes electrical stimulation, which mimics the electrical pattern that brain cells elicit. Application of external electrical stimulation can enhance this pattern or disrupt it and this process will affect the behavior of a person. Recent investigations have led to the development of a new stimulation technique that allows targeting deep brain regions. The investigators of this project want to apply this method to change the performance of healthy participants in the tasks on decision-making. If this experiment is successful, then stimulation can be used as a therapy for participants with depression.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
BASIC_SCIENCE
Masking
NONE
Enrollment
70
Participants will undergo transcranial electrical stimulation, which will be delivered with low current amplitudes (\<= 2 mA) established with international safety guidelines for electrical stimulation. Threshold for the current amplitude will be established by participants themselves, such that they cannot distinguish when stimulation is applied and not applied. Duration of stimulation will not last longer than 30 minutes.
ETH Zurich
Zurich, Schweiz, Switzerland
Accuracy
Accuracy will be collected with a keyboard and a mouse
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Reaction time
Reaction time will be collected with a keyboard and a mouse
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Fixations
Fixations of the gaze on the screen will be recorded with an eye-tracker.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Saccades
Saccades (a type of the eye movement) will be recorded with an eye-tracker.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Blood oxygenation level dependent (BOLD)
BOLD signal is measured with functional magnetic resonance imaging (fMRI) experiment.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in delta band
Oscillations within the range from 0.5 Hz to 4 Hz will be measured with electroencephalography (EEG).
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in theta band
Oscillations within the range from 4 Hz to 8 Hz will be measured with EEG.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in alpha band
Oscillations within the range from 8 Hz to 12 Hz will be measured with EEG.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in beta band
Oscillations within the range from 12 Hz to 30 Hz will be measured with EEG.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in low gamma band
Oscillations within the range from 30 Hz to 70 Hz will be measured with EEG.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
Brain oscillations in high gamma band
Oscillations within the range from 70 Hz to 250 Hz will be measured with EEG.
Time frame: Continuously while participants perform a cognitive task (circa 2 hours) with and without TI stimulation.
This platform is for informational purposes only and does not constitute medical advice. Always consult a qualified healthcare professional.