Mouse Hippocampus

The mouse hippocampus is a brain structure essential for forming and retrieving spatial, contextual, and episodic-like memories, making it a central model in neuroscience research. It processes information through interconnected regions, including the dentate gyrus and CA fields, where entorhinal inputs are transformed by recurrent circuitry and synaptic plasticity such as long-term potentiation. Researchers study hippocampal activity through behavioral assays, electrophysiology, imaging, and genetic manipulation to investigate learning, memory, navigation, and neural circuit function. This model also supports research into Alzheimer’s disease, epilepsy, stress, and other conditions that disrupt cognition.

Mouse Hippocampus - Related Videos

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JoVE EoE - Neurophysiology

In Vitro Recording of Theta Oscillations in the Mouse Hippocampus

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2025

This video demonstrates the recording of rhythmic neuronal network activity, also known as theta oscillations, in an isolated hippocampus. Electrodes are inserted into various layers and spatial positions to detect and analyze theta oscillations. This shows the unique neuronal compositions and the connectivity of the neuronal network across different layers of the hippocampus.

Implanting an Electrode Array and Optic Fiber into the Mouse Hippocampus

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2025

This video demonstrates the stereotactic implantation of a wire electrode array and an optic fiber in the hippocampus of a mouse model.

Longitudinal Two-Photon Imaging of Fluorescently Labeled Neurons in a Live Mouse Hippocampus

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2025

Source: Ulivi, A. F., et. al. Longitudinal Two-Photon Imaging of Dorsal Hippocampal CA1 in Live Mice. J. Vis. Exp. (2019) This video demonstrates longitudinal two-photon imaging of fluorescently-labeled pyramidal neurons in a live mouse, showcasing the preparation, cannula alignment, and imaging of dendrites and dendritic spines to study neuronal structure in the hippocampal CA1 region.

Stereotaxic Infusion of Oligomeric Amyloid-beta into the Mouse Hippocampus

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Cited by 41 •

2015

Here, we present a protocol for direct stereotaxic brain infusion of amyloid-beta. This methodology provides an alternative in vivo mouse model to address the short-term effects of amyloid-beta on brain neurons.

Transplantation of Human-Derived Interneuron Precursor Cells into the Mouse Pup Hippocampus

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2025

Source: Gonzalez-Ramos, A., et. al., Transplantation of Human Stem Cell-Derived GABAergic Neurons into the Early Postnatal Mouse Hippocampus to Mitigate Neurodevelopmental Disorders. J. Vis. Exp. (2022)This video demonstrates the stereotaxic injection of human-derived interneuron precursor cells into the hippocampus of a genetically modified mouse pup with reduced inhibitory interneurons, aiming to restore excitatory-inhibitory balance.

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