Hippocampal Injury

Hippocampal injury is damage to the hippocampus, a brain structure essential for forming and retrieving memories, regulating spatial navigation, and supporting aspects of learning. It can result from traumatic brain injury, reduced blood flow, seizures, infection, or neurodegenerative disease, with excitotoxic signaling, inflammation, oxidative stress, and neuronal loss disrupting hippocampal circuits and synaptic plasticity. In neuroscience research, hippocampal injury models and clinical imaging help connect cellular damage with memory impairment, identify biomarkers of disease progression, and evaluate neuroprotective or rehabilitative interventions, improving understanding of how vulnerable neural networks recover or fail after injury.

Hippocampal Injury - Related Videos

Research

JoVE Journal - Neuroscience

The Organotypic Hippocampal Slice Culture Model for Examining Neuronal Injury

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Cited by 9 •

2010

The organoptypic hippocampal slice culture model is an in vitro model used to examine neuronal injury in a variety of paradigms. In this article, we describe the methods for generating slice cultures and quantifying neuronal injury.

Investigations on Alterations of Hippocampal Circuit Function Following Mild Traumatic Brain Injury

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Cited by 13 •

2012

A multi-faceted approach to investigating functional changes to hippocampal circuitry is explained. Electrophysiological techniques are described along with the injury protocol, behavioral testing and regional dissection method. The combination of these techniques can be applied in similar fashion for other brain regions and scientific questions.

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.

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.

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.

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