Network control theory can be used to model how one should steer the brain between different states by driving a specific region with an input. The needed energy to control a network is often used to quantify its controllability, and controlling brain networks requires diverse energy depending on the selected input region. We use the theory of how input node placement affects the longest control chain (LCC) in the controllability of brain networks to study the role of the architecture of white matter fibers in the required control energy. We show that the energy needed to control human brain networks is related to the LCC, i.e., the longest distance between the input region and other regions in the network. We indicate that regions that con...
<div><p>The formation of the complex network architecture of neural systems is subject to multiple s...
<p>(<i>A</i>) To monitor and regulate the demands placed on neural systems, empirical evidence sugge...
Complex functional brain networks are large networks of brain regions and functional brain connectio...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
Summary: The brain controls various cognitive functions in a robust and efficient way. What is the c...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Network control theory is increasingly used to profile the brain\u27s energy landscape via simulatio...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Network controllability is a powerful tool to study the causal relationships in complex systems and ...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
<div><p>The formation of the complex network architecture of neural systems is subject to multiple s...
<p>(<i>A</i>) To monitor and regulate the demands placed on neural systems, empirical evidence sugge...
Complex functional brain networks are large networks of brain regions and functional brain connectio...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
The brain is a complex system with complicated structures and entangled dynamics. Among the various ...
Summary: The brain controls various cognitive functions in a robust and efficient way. What is the c...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Network control theory is increasingly used to profile the brain\u27s energy landscape via simulatio...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Cognitive function is driven by dynamic interactions between large-scale neural circuits or networks...
Network controllability is a powerful tool to study the causal relationships in complex systems and ...
Neuronal networks in the brain are the structural basis of human cognitive function, and the plastic...
<div><p>The formation of the complex network architecture of neural systems is subject to multiple s...
<p>(<i>A</i>) To monitor and regulate the demands placed on neural systems, empirical evidence sugge...
Complex functional brain networks are large networks of brain regions and functional brain connectio...