Hippocampal Networks

Hippocampal networks are interconnected neural circuits that organize information for learning, memory, and spatial representation. They receive major cortical input through the entorhinal cortex, which passes signals through the dentate gyrus, CA3, and CA1 in the classic trisynaptic circuit; recurrent excitation and activity-dependent synaptic plasticity, including long-term potentiation, help encode and retrieve patterns. Studying these networks clarifies how place cells represent locations and how experiences become lasting memories. Their organization also provides a framework for investigating memory loss, epilepsy, Alzheimer’s disease, and other disorders involving hippocampal circuit dysfunction.

Hippocampal Networks - Related Videos

Research

JoVE EoE - Neurophysiology

Optogenetic Control of Hippocampal Network Dynamics

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2025

This video demonstrates the method to use optogenetics to modulate hippocampal network dynamics by activating genetically modified light-sensitive interneurons in a mouse brain slice, enhancing theta oscillation synchronization and studying neural circuit behavior.

Organotypic Hippocampal Slice Cultures

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Cited by 52 •

2011

We describe a method to prepare organotypic hippocampal slices that can be easily adapted to other brain regions. Brain slices are laid on porous membranes and culture media is allowed to form an interface. This method preserves the gross architecture of the hippocampus for up to 2 weeks in culture.

Acute Mouse Brain Slicing to Investigate Spontaneous Hippocampal Network Activity

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Cited by 3 •

2020

This protocol describes the preparation of horizontal hippocampal-entorhinal cortex (HEC) slices from mice exhibiting spontaneous sharp-wave ripple activity. Slices are incubated in a simplified interface holding chamber and recordings are performed under submerged conditions with fast-flowing artificial cerebrospinal fluid to promote tissue oxygenation and the spontaneous emergence of network-level activity.

Co-culturing of Ventral Hippocampal and Nucleus Accumbens

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2025

This video demonstrates the process of preparing ventral hippocampal and nucleus accumbens tissues from mouse brains for co-culture. Neurons extend projections to form synaptic connections between the ventral hippocampal and nucleus accumbens tissues. This method allows studying neuronal interactions between these two brain regions, offering insights into cognition, behavior, and neurological disorders.

An Assay to Detect Autoantibodies in Human Serum using a Hippocampal Neuronal Culture

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2025

This video demonstrates a technique for identifying antibodies against specific antigens in a sample using a rat hippocampal neuronal culture. By exposing cultured neurons to patient samples containing autoantibodies targeting N-Methyl-D-aspartate receptors (NMDARs), the presence of autoantibodies bound to the neuronal surface is revealed through immunostaining.

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