The formation and maintenance of spatial representations within hippocampal cell assemblies is strongly dictated by patterns of inhibition from diverse interneuron populations. Although it is known that inhibitory synaptic strength is malleable, induction of long-term plasticity at distinct inhibitory synapses and its regulation of hippocampal network activity is not well understood. Here, we show that inhibitory synapses from parvalbumin and somatostatin expressing interneurons undergo long-term depression and potentiation respectively (PV-iLTD and SST-iLTP) during physiological activity patterns. Both forms of plasticity rely on T-type calcium channel activation to confer synapse specificity but otherwise employ distinct mechanisms. Since...
International audienceKey points • Parvalbumin-expressing interneurons represent a major source of i...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...
The formation and maintenance of spatial representations within hippocampal cell assemblies is stron...
AbstractIndividual GABAergic interneurons in hippocampus can powerfully inhibit more than a thousand...
Long-term plasticity is well documented in synapses between glutamatergic principal cells in the cor...
Inhibitory interneurons of the hippocampus are a diverse population that play vital roles in regulat...
Apical dendrites of pyramidal neurons integrate information from higher-order cortex and thalamus, a...
Different GABAergic interneuron types have specific roles in hippocampal function, and anatomical as...
AbstractIndividual GABAergic interneurons in hippocampus can powerfully inhibit more than a thousand...
Summary: The hippocampus is critical for the formation of episodic memory. It is, therefore, importa...
© 2016, Springer Science+Business Media New York.Long-term plasticity plays an important role in the...
Excitation/inhibition balance is critical for optimal brain function, yet the mechanisms underlying ...
Area CA2 is emerging as an important region for hippocampal memory formation. However, how CA2 pyram...
© 2016 Jappy, Valiullina, Draguhn and Rozov. Activity induced long lasting modifications of synaptic...
International audienceKey points • Parvalbumin-expressing interneurons represent a major source of i...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...
The formation and maintenance of spatial representations within hippocampal cell assemblies is stron...
AbstractIndividual GABAergic interneurons in hippocampus can powerfully inhibit more than a thousand...
Long-term plasticity is well documented in synapses between glutamatergic principal cells in the cor...
Inhibitory interneurons of the hippocampus are a diverse population that play vital roles in regulat...
Apical dendrites of pyramidal neurons integrate information from higher-order cortex and thalamus, a...
Different GABAergic interneuron types have specific roles in hippocampal function, and anatomical as...
AbstractIndividual GABAergic interneurons in hippocampus can powerfully inhibit more than a thousand...
Summary: The hippocampus is critical for the formation of episodic memory. It is, therefore, importa...
© 2016, Springer Science+Business Media New York.Long-term plasticity plays an important role in the...
Excitation/inhibition balance is critical for optimal brain function, yet the mechanisms underlying ...
Area CA2 is emerging as an important region for hippocampal memory formation. However, how CA2 pyram...
© 2016 Jappy, Valiullina, Draguhn and Rozov. Activity induced long lasting modifications of synaptic...
International audienceKey points • Parvalbumin-expressing interneurons represent a major source of i...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...
Use-dependent long-term plasticity in synaptic connections represents the cellular substrate for lea...