Neuronal Function Analysis

Neuronal function analysis is the systematic study of how neurons generate, transmit, and modify signals, providing a foundation for understanding nervous-system activity in health and disease. Researchers examine electrical excitability, synaptic transmission, calcium dynamics, and responses to defined stimuli using approaches such as patch-clamp electrophysiology, imaging, and computational analysis. By linking membrane potentials and action potentials to neurotransmitter release, network activity, and behavior, these measurements reveal how individual cells communicate within neural circuits. The resulting data support research on development, learning and memory, sensory processing, and neurological disorders, while helping evaluate disease mechanisms and potential therapeutic interventions.

Neuronal Function Analysis - Related Videos

Research

JoVE Journal - Neuroscience

Cell Subtype-specific Analysis of Neuronal Membrane Proteasome in Somatosensory Neurons

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2025

The neuronal membrane proteasome (NMP) was recently identified in a subset of somatosensory neurons as a key regulator of touch, pain, and itch perception. This article presents a robust workflow for analyzing cell-type-specific NMP expression and function using cell sorting, transcriptome profiling, and culture-based immunofluorescent analyses.

Perforated Patch-clamp Recording of Mouse Olfactory Sensory Neurons in Intact Neuroepithelium: Functional Analysis of Neurons Expressing an Identified Odorant Receptor

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Cited by 7 •

2015

Analyzing the physiological properties of olfactory sensory neurons still faces technical limitations. Here we record them through perforated patch-clamp in an intact preparation of the olfactory epithelium in gene-targeted mice. This technique allows the characterization of membrane properties and responses to specific ligands of neurons expressing defined olfactory receptors.

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.

Analysis of Dendritic Spine Morphology in Cultured CNS Neurons

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Cited by 69 •

2011

Numerous recent studies have identified mutations in synaptic proteins associated with brain pathologies. Primary cultured cortical neurons offer great flexibility in examining the effects of these disease-associated proteins on dendritic spine morphology and motility.

In utero Electroporation followed by Primary Neuronal Culture for Studying Gene Function in Subset of Cortical Neurons

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Cited by 18 •

2010

In utero electroporation is a valuable method for transfecting neuronal progenitor cells in vivo. Depending upon the placement of the electrodes and the developmental timepoint of electroporation, certain subsets of cortical cells can be targeted. Targeted cells can then be analyzed in vivo or in vitro for effects of genetic alteration.

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