Ca1 Ca3 Dentate Regions

The CA1, CA3, and dentate regions are interconnected subregions of the hippocampus that organize neural activity essential for learning, memory, and spatial representation. In the canonical hippocampal circuit, signals from the entorhinal cortex enter the dentate gyrus, whose granule cells project through mossy fibers to CA3; CA3 pyramidal neurons then communicate with CA1 through Schaffer collateral pathways, where information is integrated and relayed onward. Their distinct connectivity and cellular properties support pattern separation, associative memory, and experience-dependent plasticity. Studying these regions helps researchers investigate hippocampal computation, memory formation, and disruptions associated with neurological disease.

Ca1 Ca3 Dentate Regions - Related Videos

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JoVE EoE - Neurophysiology

Recording CA3-CA1 Synaptic Responses in a Rat Hippocampal Slice

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2025

This video demonstrates a method to record CA3-CA1 synaptic responses in a rat hippocampal slice. It outlines the steps involved in placing the stimulating and recording electrodes on the hippocampal slice and measuring the field excitatory postsynaptic potential (fEPSP) to assess synaptic response strength.

Assessment of Dendritic Arborization in the Dentate Gyrus of the Hippocampal Region in Mice

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Cited by 6 •

2015

We describe two methods for visualization and quantification of dendritic arborization in the hippocampus of mouse models: real-time and extended depth of field imaging. While the former method allows sophisticated topographical tracing and quantification of the extent of branching, the latter allows speedy visualization of the dendritic tree.

Research

JoVE Journal - Neuroscience
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Stereotactic Atlas-Guided Laser Capture Microdissection of Brain Regions Affected by Traumatic Injury

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Cited by 3 •

2017

We describe the use of laser capture microdissection to obtain samples of distinct cell populations from different brain regions for gene and microRNA analysis. This technique allows the study of differential effects of traumatic brain injury in specific regions of the rat brain.

Stereotactic Injection of MicroRNA-expressing Lentiviruses to the Mouse Hippocampus CA1 Region and Assessment of the Behavioral Outcome

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Cited by 23 •

2013

MicroRNAs have significant roles in brain structure and function. Here we describe a method to enforce hippocampal miRNA over-expression using stereotactic injection of an engineered miRNA-expressing lentivirus. This approach can serve as a relatively rapid way to assess the in vivo effects of over-expressed miRNAs in specific brain regions.

High-Frequency Stimulation to Enhance Neuronal Activation and Neurogenesis in the Mouse Dentate Gyrus

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2025

Source: Zhao, Z. et al. An Invasive Method for the Activation of the Mouse Dentate Gyrus by High-frequency Stimulation. J. Vis. Exp. (2018)This video demonstrates the protocol for delivering high-frequency deep brain stimulation to a mouse hippocampal dentate gyrus, detailing its effects on neuronal activation, synaptic plasticity, and neurogenesis.

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