Hippocampal Imaging

Hippocampal imaging comprises methods for visualizing the structure, activity, and connectivity of the hippocampus, a brain region central to memory and spatial navigation. In neuroscience, magnetic resonance imaging can map hippocampal anatomy and blood-oxygen-level-dependent signals, while optical techniques can track activity from labeled neurons with cellular or circuit-level resolution. These approaches reveal how hippocampal networks encode experiences, organize memories, and change across development, learning, aging, and neurological disease. Imaging findings support research on conditions such as Alzheimer’s disease and epilepsy, guide comparisons between healthy and impaired brain function, and help link cellular mechanisms with behavior.

Hippocampal Imaging - Related Videos

Research

JoVE Journal - Neuroscience

Fluorescence and Bioluminescence Imaging of Subcellular Ca2+ in Aged Hippocampal Neurons

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Cited by 6 •

2015

Intracellular Ca2+ remodeling in aging may contribute to excitotoxicity and neuron damage, processes mediated by Ca2+ overload. We aimed at investigating Ca2+ remodeling in the aging brain using fluorescence and bioluminescence imaging of cytosolic and mitochondrial Ca2+ in long-term cultures of rat hippocampal neurons, a model of neuronal aging.

Research

JoVE Journal - Neuroscience
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Neuromodulation and Mitochondrial Transport: Live Imaging in Hippocampal Neurons over Long Durations

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Cited by 7 •

2011

We describe a protocol that allows imaging of mitochondria in living neurons via fluorescence microscopy over long durations. Imaging over extended periods is accomplished through lentivirus-mediated expression of a mitochondrially targeted fluorescent protein and use of an inexpensive stage-top incubator that was designed and built in our laboratory.

Imaging Nicotine-Induced Calcium Signaling along Ventral Hippocampal Axons in Synaptic Co-Cultures

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2025

This video demonstrates how nicotine-mediated activation of nicotinic acetylcholine receptors in the mouse ventral hippocampus results in sustained calcium signaling along the axons.

Live Imaging of Dense-core Vesicles in Primary Cultured Hippocampal Neurons

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Cited by 10 •

2009

Live cell imaging is of particular utility when studying the dynamics of organelle trafficking. Here we describe a protocol for live imaging of dense-core vesicles in cultured neurons using wide-field fluorescence microscopy. This protocol is flexible and can be adapted to image other organelles such as mitochondria, endosomes, and peroxisomes.

Live Imaging of Nicotine Induced Calcium Signaling and Neurotransmitter Release Along Ventral Hippocampal Axons

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Cited by 7 •

2015

We developed a gene-chimeric preparation of ventral hippocampal – accumbens circuit in vitro that allows direct live imaging to analyze presynaptic mechanisms of nicotinic acetylcholine receptors (nAChRs) mediated synaptic transmission. This preparation also provides an informative approach to study the pre- and post-synaptic mechanisms of synaptic plasticity.

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