UNLABELLED: Neocortical circuits can be altered by sensory and motor experience, with experimental evidence supporting both anatomical and electrophysiological changes in synaptic properties. Previous studies have focused on changes in specific neurons or pathways-for example, the thalamocortical circuitry, layer 4-3 (L4-L3) synapses, or in the apical dendrites of L5 neurons- but a broad-scale analysis of experience-induced changes across the cortical column has been lacking. Without this comprehensive approach, a full understanding of how cortical circuits adapt during learning or altered sensory input will be impossible. Here we adapt an electron microscopy technique that selectively labels synapses, in combination with a machine-learning...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
SummaryWe describe automated technologies to probe the structure of neural tissue at nanometer resol...
SummaryLocal recurrent excitatory circuits are ubiquitous in neocortex, yet little is known about th...
<p>Neocortical circuits can adapt to changes in sensory input by modifying the strength or number of...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
AbstractRecent electron microscopic studies provide evidence that the adult cortex generates new syn...
Motivation: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
<p>MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically fo...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Still little is known about naturally occurring synaptogenesis in the adult neocortex and related im...
Studies over several decades on the organization of the CA1 hippocampus–a particularly favorable mod...
<p>Experience-dependent plasticity is the adaptability of brain circuits as a result of changes in n...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
SummaryWe describe automated technologies to probe the structure of neural tissue at nanometer resol...
SummaryLocal recurrent excitatory circuits are ubiquitous in neocortex, yet little is known about th...
<p>Neocortical circuits can adapt to changes in sensory input by modifying the strength or number of...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
Behavioral experience alters the strength of neuronal connections in adult neocortex. These changes ...
AbstractRecent electron microscopic studies provide evidence that the adult cortex generates new syn...
Motivation: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
<p>MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically fo...
MOTIVATION: Synaptic connections underlie learning and memory in the brain and are dynamically forme...
Still little is known about naturally occurring synaptogenesis in the adult neocortex and related im...
Studies over several decades on the organization of the CA1 hippocampus–a particularly favorable mod...
<p>Experience-dependent plasticity is the adaptability of brain circuits as a result of changes in n...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
The functionality of adult neocortical circuits can be altered by novel experiences or learning. Thi...
SummaryWe describe automated technologies to probe the structure of neural tissue at nanometer resol...
SummaryLocal recurrent excitatory circuits are ubiquitous in neocortex, yet little is known about th...