Neuronal Response Profiling

Neuronal response profiling is the systematic measurement and comparison of how neurons react to defined stimuli, revealing functional properties of individual cells and neural circuits. Researchers present controlled sensory, chemical, electrical, or synaptic inputs and quantify resulting changes in action-potential firing, calcium signals, membrane potential, or synaptic activity, often across many neurons. These response profiles help identify cell types, characterize circuit connectivity, and determine how neural activity represents information. In neuroscience, the approach supports studies of sensory processing, learning, disease-related dysfunction, and responses to therapeutic compounds, while enabling comparisons across brain regions, experimental conditions, and biological models.

Neuronal Response Profiling - Related Videos

Research

JoVE Journal - Neuroscience

Single-cell Profiling of Developing and Mature Retinal Neurons

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Cited by 13 •

2012

A method for the isolation of single retinal cells and subsequent amplification of their cDNAs is described. Single-cell transcriptomics reveals the degree of cellular heterogeneity present in a tissue and uncovers new marker genes for rare cell populations. The accompanying protocol can be adjusted to suit many different cell types.

Detecting Physiological Responses from Sensory Neurons in Drosophila

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2025

This video demonstrates a method for detecting sensory neuron responses in Drosophila using ligand binding and fluorescence imaging. Ligands bind to neuron receptors, causing calcium influx. The calcium binds to indicator complexes, leading to fluorescence emission, which confirms the neuronal response to the ligand.

In Vivo Imaging of Geniculate Ganglion Neuron Responses Using Epifluorescent Microscopy

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2025

Source: Fowler, B. E., et al. In vivo Calcium Imaging of Mouse Geniculate Ganglion Neuron Responses to Taste Stimuli. J. Vis. Exp. (2021) This video demonstrates a protocol for delivering tastants to the surgically exposed geniculate ganglion in an anesthetized mouse and using GCaMP fluorescence with epifluorescent microscopy to visualize real-time neuronal responses, aiding studies on peripheral taste signal processing.

Studying the Coding Profiles of Somatic Stimulation on Cardiac-locked Neuronal Responses in the Rat Spinal Dorsal Horn

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2025

We describe a protocol for spinal multichannel extracellular recording alongside cardiac function recording and analyzing the cardiac-locked spinal dorsal horn neurons. This method offers a temporally synchronized framework for studying spinal mechanisms underlying thoracic visceral functional changes induced by acupuncture.

Profiling Voltage-gated Potassium Channel mRNA Expression in Nigral Neurons using Single-cell RT-PCR Techniques

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Cited by 2 •

2011

Neurons are first characterized electrophysiologically. Then the cytoplasm from the recorded neuron is aspirated and subjected to reverse transcription-PCR analysis to detect the expression of mRNAs for neurotransmitter synthesis enzymes, ion channels, and receptors.

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