Single Neuron Imaging

Single neuron imaging is the visualization and measurement of the structure, activity, or molecular state of individual neurons, allowing neuroscience researchers to connect cellular behavior with circuit function. In common optical approaches, fluorescent reporters change their intensity or spectrum when calcium levels, membrane voltage, or selected signaling pathways change, while microscopy captures these signals over time in living tissue. Researchers use these measurements to map neuronal morphology, monitor stimulus-evoked activity, and compare responses across cells during behavior or disease. By resolving heterogeneity that population averages can conceal, single neuron imaging helps clarify neural coding, connectivity, plasticity, and mechanisms underlying neurological disorders.

Single Neuron Imaging - Related Videos

Education

JoVE Science Education - Advanced Biology

Calcium Imaging in Neurons

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2023

Calcium ions play an integral role in neuron function: They act as intracellular signals that can elicit responses such as altered gene expression and neurotransmitter release from synaptic vesicles. Within the cell, calcium concentration is highly dynamic due to the presence of pumps that selectively transport these ions in response to a variety of signals. Calcium imaging takes advantage of intracellular calcium flux to directly visualize calcium signaling in living neurons.This video begins...

Research

JoVE Journal - Neuroscience

In vivo Neuronal Calcium Imaging in C. elegans

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Cited by 20 •

2013

With its small transparent body, well-documented neuroanatomy and a host of amenable genetic techniques and reagents, C. elegans makes an ideal model organism for in vivo neuronal imaging using relatively simple, low-cost techniques. Here we describe single neuron imaging within intact adult animals using genetically encoded fluorescent calcium indicators.

Preparation of Neuronal Co-cultures with Single Cell Precision

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Cited by 6 •

2014

Protocols for single neuron microfluidic arraying and water masking for the in-chip plasma patterning of biomaterial coatings are described. Highly interconnected co-cultures can be prepared using minimal cell inputs.

Simultaneous Eye Tracking and Single-Neuron Recording to Identify Target-Selective Neurons

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2025

The video demonstrates an assay to identify target-selective neurons via simultaneous eye-tracking and single-neuron recordings. A human participant is tasked with identifying a target object among an array of objects in a display, and the eye movement is tracked. Simultaneously, single neurons' firing rate is recorded via electrodes implanted in the brain. The data from both recordings are correlated to assess the presence of target-selective neurons.

Single Drosophila Ommatidium Dissection and Imaging

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Cited by 1 •

2011

The limiting factor in the use of the adult Drosophila eye to study neurodegeneration and cell biology is the difficult imaging of intracellular processes. We describe the dissection of single ommatidia to generate a bona-fide primary neuronal cell culture, which can be subject to drug treatment and advanced imaging.

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