AbstractThe functional organization of adult cerebral cortex is characterized by the presence of highly ordered sensory and motor maps. Despite their archetypical organization, the maps maintain the capacity to rapidly reorganize, suggesting that the neural circuitry underlying cortical representations is inherently plastic. Here we show that the circuitry supporting motor maps is dependent upon continued protein synthesis. Injections of two different protein synthesis inhibitors into adult rat forelimb motor cortex caused an immediate and enduring loss of movement representations. The disappearance of the motor map was accompanied by a significant reduction in synapse number, synapse size, and cortical field potentials and caused skilled f...
The mechanisms underlying the emergence of learned motor skill representation in primary motor corte...
This thesis used a rodent model of skilled forelimb training and intracortical microstimulation to e...
AbstractWhen rats learn a motor skill, synaptic potentials in the motor cortex are enhanced. A new s...
Functional imaging studies in humans and electrophysiological data in animals suggest that corticost...
Neural plasticity - the capacity of the brain to change - has been described at almost every level o...
AbstractSynaptic plasticity is a multistep process in which rapid, early phases eventually give way ...
SummaryCortical motor maps are the basis of voluntary movement, but they have proven difficult to un...
Appropriate patterning of synaptic circuitry is vital for proper central nervous system function, an...
AbstractPrimary motor cortex has a complex, interconnected anatomical and functional architecture wi...
Neuroplasticity and reorganization of brain motor networks are thought to enable recovery of motor f...
Primary motor cortex (M1) is involved in the production of voluntary movement and contains a complet...
Cortical control of neuroprosthetic devices is known to require neuronal adaptations. It remains unc...
AbstractRecent electron microscopic studies provide evidence that the adult cortex generates new syn...
Cortical sensory maps are highly organized structures that contain point-to-point representations of...
In the past decade, there have been considerable advances in understanding the neuronal bases of sen...
The mechanisms underlying the emergence of learned motor skill representation in primary motor corte...
This thesis used a rodent model of skilled forelimb training and intracortical microstimulation to e...
AbstractWhen rats learn a motor skill, synaptic potentials in the motor cortex are enhanced. A new s...
Functional imaging studies in humans and electrophysiological data in animals suggest that corticost...
Neural plasticity - the capacity of the brain to change - has been described at almost every level o...
AbstractSynaptic plasticity is a multistep process in which rapid, early phases eventually give way ...
SummaryCortical motor maps are the basis of voluntary movement, but they have proven difficult to un...
Appropriate patterning of synaptic circuitry is vital for proper central nervous system function, an...
AbstractPrimary motor cortex has a complex, interconnected anatomical and functional architecture wi...
Neuroplasticity and reorganization of brain motor networks are thought to enable recovery of motor f...
Primary motor cortex (M1) is involved in the production of voluntary movement and contains a complet...
Cortical control of neuroprosthetic devices is known to require neuronal adaptations. It remains unc...
AbstractRecent electron microscopic studies provide evidence that the adult cortex generates new syn...
Cortical sensory maps are highly organized structures that contain point-to-point representations of...
In the past decade, there have been considerable advances in understanding the neuronal bases of sen...
The mechanisms underlying the emergence of learned motor skill representation in primary motor corte...
This thesis used a rodent model of skilled forelimb training and intracortical microstimulation to e...
AbstractWhen rats learn a motor skill, synaptic potentials in the motor cortex are enhanced. A new s...