As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and change over time. In this paper, we develop methods to examine patterns of correlated activity across a large set of brain regions. Our goal is to identify properties that enable robust learning of a motor skill. We measure brain activity during motor sequencing and characterize network properties based on coherent activity between brain regions. Using recently developed algorithms to detect time-evolving communities, we find that the complex reconfiguration patterns of the brain's putative functional modules that control learning can be described parsimoniously by the combined presence of a relatively stiff temporal core that is composed primaril...
Human learning is a complex phenomenon requiring flexibility to adapt existing brain function and pr...
<div><p>One of the most remarkable features of the human brain is its ability to adapt rapidly and e...
The evaluation of the topological properties of brain networks is an emerging research topic, since ...
s a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and change...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
<div><p>As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged a...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
We study functional activity in the human brain using functional Magnetic Resonance Imaging and rece...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
<p>determined using fMRI signals during the performance of a simple motor learning task. <i>(A)</i> ...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
Human learning is a complex phenomenon requiring flexibility to adapt existing brain function and pr...
<div><p>One of the most remarkable features of the human brain is its ability to adapt rapidly and e...
The evaluation of the topological properties of brain networks is an emerging research topic, since ...
s a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and change...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
<div><p>As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged a...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
As a person learns a new skill, distinct synapses, brain regions, and circuits are engaged and chang...
We study functional activity in the human brain using functional Magnetic Resonance Imaging and rece...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
<p>determined using fMRI signals during the performance of a simple motor learning task. <i>(A)</i> ...
We study functional activity in the human brain using functional magnetic resonance imaging and rece...
Human learning is a complex phenomenon requiring flexibility to adapt existing brain function and pr...
<div><p>One of the most remarkable features of the human brain is its ability to adapt rapidly and e...
The evaluation of the topological properties of brain networks is an emerging research topic, since ...