Human Hippocampal Tissue

Human hippocampal tissue is the cellular and anatomical material of the hippocampus, a brain structure essential for memory formation, spatial navigation, and learning. Its function depends on interconnected circuits, including inputs from the entorhinal cortex and the dentate gyrus–CA3–CA1 pathway, where synaptic plasticity changes the strength of neuronal communication. Studying human hippocampal tissue with anatomical, electrophysiological, molecular, and imaging methods reveals how neurons and supporting cells organize these processes. This research connects hippocampal structure and function with epilepsy, Alzheimer’s disease, aging, and other neurological conditions, while helping assess how findings from experimental models translate to human brain biology.

Human Hippocampal Tissue - Related Videos

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JoVE EoE - Neuronal Culture Techniques

Dissociating and Culturing Neurons from Hippocampal Tissue Samples

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2025

This video demonstrates the dissociation and culture of hippocampal neurons from hippocampal tissue samples using enzymatic and mechanical dissociations. The treatment with Ara-C inhibits the growth of non-neuronal cells, facilitating the selective growth of hippocampal neurons.

Formation and Expansion of Neurospheres from a Hippocampal Tissue

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2025

This video demonstrates the process of neurosphere formation and their expansion from hippocampal tissue. Neural stem and progenitor cells from the postnatal mouse dentate gyrus tissue proliferate and form primary neurospheres, which are then reseeded to form secondary neurospheres.

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.

Obtaining a Single-Cell Suspension from Mouse Hippocampal Tissue

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2025

This video demonstrates a protocol to obtain a highly viable single-cell suspension from the mouse brain hippocampus using a combination of automated mechanical dissociation and a mixture of enzymes to aid in enzymatic digestion.

Recording Neural Activity of Unfolded Hippocampal Tissue Using Penetrating Microelectrode Array

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2025

This video demonstrates the procedure to set up a recording chamber with a penetrating microelectrode array (PMEA) to capture neural signals from an unfolded hippocampus. This method allows us to study the speed and direction of propagation of neural activity within the unfolded hippocampus in vitro.

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