Neuronal Connections

Neuronal connections are specialized communication links that allow nerve cells to transmit information and coordinate activity across the nervous system. Most connections occur at synapses, where an electrical signal reaching an axon terminal triggers neurotransmitter release into a narrow gap; these chemical messengers then bind receptors on a neighboring neuron and alter its electrical state, while some neurons communicate through direct electrical coupling. Connection strength can change through synaptic plasticity, providing a cellular basis for learning, memory, development, and adaptation. Studying neuronal connections helps researchers understand neural circuits, sensory processing, behavior, and disorders involving disrupted communication, including epilepsy and neurodegenerative disease.

Neuronal Connections - Related Videos

Research

JoVE Journal - Neuroscience

Rewiring Neuronal Circuits: A New Method for Fast Neurite Extension and Functional Neuronal Connection

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Cited by 8 •

2017

This procedure describes how to rapidly initiate, extend and connect neurites organized in microfluidic chambers using poly-D-lysine-coated beads fixed to micropipettes that guide neurite elongation.

Research

JoVE Journal - Developmental Biology
Free Sample

An Optogenetic Approach for Assessing Formation of Neuronal Connections in a Co-culture System

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Cited by 20 •

2015

A protocol to generate a co-culture system consisting of neurons derived from induced pluripotent stem cells (iPSCs), primary cortical neurons and astrocytes is described. This co-culture system allows detection of the formation of synaptic contacts and circuits between new, iPSC-derived neurons and pre-existing cortical neurons expressing channelrhodopsin-2.

In Vitro Wedge Slice Preparation for Mimicking In Vivo Neuronal Circuit Connectivity

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Cited by 3 •

2020

Integration of diverse synaptic inputs to neurons is best measured in a preparation that preserves all pre-synaptic nuclei for natural timing and circuit plasticity, but brain slices typically sever many connections. We developed a modified brain slice to mimic in vivo circuit activity while maintaining in vitro experimentation capability.

Initiating Rapid Neurite Extension and Formation Functional Neuronal Connections

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2025

This video demonstrates a technique for the rapid initiation and extension of a neuron and creation of new connections with a target neuron using a microfluidic device and micromanipulation. This could be used for therapies that aim to reconnect neuronal circuits after trauma or in neurodegenerative diseases.

In Utero Electroporation Approaches to Study the Excitability of Neuronal Subpopulations and Single-cell Connectivity

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Cited by 10 •

2017

This manuscript provides protocols that use in utero electroporation (IUE) to describe the structural connectivity of neurons at the single-cell level and the excitability of fluorescently labeled neurons. Histology is used to characterize dendritic and axonal projections. Whole-cell recording in acute slices is used to investigate excitability.

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