Behavioral, physiological, and anatomical evidence indicates that the dorsal and ventral zones of the hippocampus have distinct roles in cognition. How the unique functions of these zones might depend on differences in synaptic and neuronal function arising from the strikingly different gene expression profiles exhibited by dorsal and ventral CA1 pyramidal cells is unclear. To begin to address this question, we investigated the mechanisms underlying differences in synaptic transmission and plasticity at dorsal and ventral Schaffer collateral (SC) synapses in the mouse hippocampus. We find that, although basal synaptic transmission is similar, SC synapses in the dorsal and ventral hippocampus exhibit markedly different responses to θ frequen...
Synaptic activity in the medial prefrontal cortex (mPFC) is fundamental for higher cognitive functio...
Synchronized discharges in the hippocampal CA3 recurrent network are supposed to underlie network os...
N-methyl-D-aspartate (NMDA) receptors (NMDARs) are implicated in synaptic plasticity and modu...
Behavioral, physiological, and anatomical evidence indicates that the dorsal and ventral zones of th...
BACKGROUND: The hippocampus is critically involved in learning and memory processes. Although once c...
The NMDA receptor is crucial for the induction of neuronal plasticity throughout the central nervous...
Hebbian synaptic plasticity at hippocampal Schaffer collateral synapses is tightly regulated by post...
Input-dependent left–right asymmetry of NMDA receptor ε2 (NR2B) subunit allocation was discovered in...
SummarySynaptic potentials originating at distal dendritic locations are severely attenuated when th...
Although the Morris water maze (MWM) is the most frequently used protocol to examine hippocampus-dep...
At glutamatergic synapses, induction of associative synaptic plasticity requires time-correlated pre...
Information transfer between neurons in the central nervous system occurs at specialized contacts, c...
SummaryHigh-frequency bursts of action potentials (APs) are a distinctive form of signaling in vario...
Experience-dependent plasticity is a key feature of brain synapses for which neuronal N-Methyl-D-Asp...
Synaptic plasticity is a cellular process involved in learning and memory by which specific patterns...
Synaptic activity in the medial prefrontal cortex (mPFC) is fundamental for higher cognitive functio...
Synchronized discharges in the hippocampal CA3 recurrent network are supposed to underlie network os...
N-methyl-D-aspartate (NMDA) receptors (NMDARs) are implicated in synaptic plasticity and modu...
Behavioral, physiological, and anatomical evidence indicates that the dorsal and ventral zones of th...
BACKGROUND: The hippocampus is critically involved in learning and memory processes. Although once c...
The NMDA receptor is crucial for the induction of neuronal plasticity throughout the central nervous...
Hebbian synaptic plasticity at hippocampal Schaffer collateral synapses is tightly regulated by post...
Input-dependent left–right asymmetry of NMDA receptor ε2 (NR2B) subunit allocation was discovered in...
SummarySynaptic potentials originating at distal dendritic locations are severely attenuated when th...
Although the Morris water maze (MWM) is the most frequently used protocol to examine hippocampus-dep...
At glutamatergic synapses, induction of associative synaptic plasticity requires time-correlated pre...
Information transfer between neurons in the central nervous system occurs at specialized contacts, c...
SummaryHigh-frequency bursts of action potentials (APs) are a distinctive form of signaling in vario...
Experience-dependent plasticity is a key feature of brain synapses for which neuronal N-Methyl-D-Asp...
Synaptic plasticity is a cellular process involved in learning and memory by which specific patterns...
Synaptic activity in the medial prefrontal cortex (mPFC) is fundamental for higher cognitive functio...
Synchronized discharges in the hippocampal CA3 recurrent network are supposed to underlie network os...
N-methyl-D-aspartate (NMDA) receptors (NMDARs) are implicated in synaptic plasticity and modu...