Skip to main navigation
Skip to search
Skip to main content
Experts@Minnesota Home
Search content at Experts@Minnesota
Home
Profiles
Research units
University Assets
Projects and Grants
Research output
Datasets
Press/Media
Activities
Fellowships, Honors, and Prizes
Impacts
Controlling the human connectome with spatially diffuse input signals
Richard Betzel
, Maria Grazia Puxeddu
, Caio Seguin
, Vincent Bazinet
, Andrea Luppi
, Alina Podschun
, S. Parker Singleton
, Joshua Faskowitz
, Vibin Parakkattu
, Bratislav Misic
, Sebastian Markett
, Amy Kuceyeski
, Linden Parkes
Neuroscience
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Controlling the human connectome with spatially diffuse input signals'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Functional Connectome
100%
Optimal Control
100%
Input Signals
100%
Energy Required
100%
Human Brain
50%
Neurochemicals
50%
Control Model
50%
Network Applications
50%
Cerebral Cortex
50%
Structural Coupling
50%
Structural Connectivity
50%
Whole Brain
50%
Networked Control
50%
Spatial Specificity
50%
Order of Magnitude
50%
Spatial Dependence
50%
Network Node
50%
Stimulation Site
50%
Optimal Control Strategy
50%
Site Density
50%
Brain Dynamics
50%
Brain Patterns
50%
Brain Stimulation Techniques
50%
Spatial Continuity
50%
Network Control Theory
50%
Near-optimal Control
50%
Brain State Transition
50%
Neighboring Regions
50%
Brain States
50%
Individual-based Networks
50%
Metabolic Genetics
50%
Neuroscience
Cerebral Cortex
100%
Control Theory
100%
Electrical Brain Stimulation
100%
Human Brain
100%
Genetics
100%
Structural Connectivity
100%