Engineering
Spatial Position
100%
Limitations
100%
Electric Field
100%
Conductive
100%
Region of Interest
50%
Surrounding Tissue
50%
Rule of Thumb
50%
Computational Efficiency
50%
Target Position
50%
Target Area
50%
Optimisation Procedure
50%
Keyphrases
Spatial Position
100%
Cortical Regions
100%
Transcranial Alternating Current Stimulation (tACS)
100%
Brain Regions
33%
Multi-electrode
22%
Electric Field (E-field)
22%
Focality
22%
Physiological Variables
11%
Brain Function
11%
Stimulus Intensity
11%
Cortex
11%
Region of Interest
11%
Scalp
11%
Surrounding Tissues
11%
Electric Stimulation
11%
Computationally Efficient
11%
Target Position
11%
Electrode Placement
11%
Neurophysiological Tools
11%
Automatic Determination
11%
Safety Considerations
11%
Physical Limitations
11%
Optimization Procedure
11%
Deep Brain
11%
Human Head
11%
Safety Requirements
11%
Active Electrode
11%
Behavioural Variables
11%
Weak Current
11%
Conductive Properties
11%
High Computational Efficiency
11%
Angular Deviation
11%
Biophysical Constraints
11%
Deep Location
11%
Robust Implementation
11%
Intrinsic Neural Activity
11%
Computer Science
Cortical Region
100%
Computational Efficiency
100%
Surrounding Tissue
100%
Field Direction
100%
Target Position
100%
Neuroscience
Brain Areas
100%
Brain Function
100%
Neuroscience
100%
Psychology
Neuroscience
100%
Rule of Thumb
100%