Olfactory-discrimination learning was shown to induce a profound long-lasting enhancement in the strength of excitatory and inhibitory synapses of pyramidal neurons in the piriform cortex. Notably, such enhancement was mostly pronounced in a sub-group of neurons, entailing about a quarter of the cell population. Here we first show that the prominent enhancement in the subset of cells is due to a process in which all excitatory synapses doubled their strength and that this increase was mediated by a single process in which the AMPA channel conductance was doubled. Moreover, using a neuronal-network model, we show how such a multiplicative whole-cell synaptic strengthening in a sub-group of cells that form a memory pattern, sub-serves a profo...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...
Synaptic changes are hypothesized to underlie learning and memory formation in the brain. But Hebbia...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...
Olfactory-discrimination learning was shown to induce a profound long-lasting enhancement in the str...
Once trained, rats are able to execute particularly difficult olfactory discrimination tasks with ex...
The biological mechanisms underlying complex forms of learning requiring the understanding of rules ...
Learning of a particularly difficult olfactory-discrimination (OD) task results in acquisition of ru...
Training rats in a complex olfactory discrimination task results in acquisition of “rule learning” ...
Afferent olfactory information, in vivo and in vitro, can be rapidly adapted to through a metabotrop...
AbstractOlfaction is a principal sensory modality in rodents, and rats quickly learn to discriminate...
International audienceNew sensory stimuli can be learned with a single or a few presentations. Simil...
One of the central questions of neuroscience research has been how the cellular and molecular compon...
The excitatory synapse between hippocampal CA3 and CA1 pyramidal neurons exhibits long-term potentia...
SummaryLocal inhibitory circuits are thought to shape neuronal information processing in the central...
The neurons in the mammalian brain can be classified into two broad categories: excitatory and inhib...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...
Synaptic changes are hypothesized to underlie learning and memory formation in the brain. But Hebbia...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...
Olfactory-discrimination learning was shown to induce a profound long-lasting enhancement in the str...
Once trained, rats are able to execute particularly difficult olfactory discrimination tasks with ex...
The biological mechanisms underlying complex forms of learning requiring the understanding of rules ...
Learning of a particularly difficult olfactory-discrimination (OD) task results in acquisition of ru...
Training rats in a complex olfactory discrimination task results in acquisition of “rule learning” ...
Afferent olfactory information, in vivo and in vitro, can be rapidly adapted to through a metabotrop...
AbstractOlfaction is a principal sensory modality in rodents, and rats quickly learn to discriminate...
International audienceNew sensory stimuli can be learned with a single or a few presentations. Simil...
One of the central questions of neuroscience research has been how the cellular and molecular compon...
The excitatory synapse between hippocampal CA3 and CA1 pyramidal neurons exhibits long-term potentia...
SummaryLocal inhibitory circuits are thought to shape neuronal information processing in the central...
The neurons in the mammalian brain can be classified into two broad categories: excitatory and inhib...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...
Synaptic changes are hypothesized to underlie learning and memory formation in the brain. But Hebbia...
Local inhibitory circuits are thought to shape neuronal information processing in the central nervou...