Neuron Reconstruction

Neuron reconstruction is the process of mapping a neuron’s three-dimensional structure from microscopy images to characterize its soma, axon, dendrites, and branching patterns. Researchers typically trace cellular processes across image stacks, align successive optical sections, and convert the traced features into a digital morphological model that can be measured and analyzed. In neuroscience, these reconstructions help classify neuronal types, compare morphology across brain regions or conditions, and relate structure to connectivity and function. Combined with electrophysiology, genetic labeling, or circuit mapping, neuron reconstruction supports studies of development, neurodegeneration, and how cellular architecture shapes information processing.

Neuron Reconstruction - Related Videos

Research

JoVE Journal - Neuroscience

Large-scale Reconstructions and Independent, Unbiased Clustering Based on Morphological Metrics to Classify Neurons in Selective Populations

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Cited by 3 •

2017

This protocol describes large-scale reconstructions of selective neuronal populations, labeled following retrograde infection with a modified rabies virus expressing fluorescent markers, and independent, unbiased cluster analyses that enable comprehensive characterization of morphological metrics among distinct neuronal subclasses.

Focused Ion Beam Scanning Electron Microscopy for 3D Reconstruction of Synaptically Linked Neurons

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2025

Take a fixed section of mouse cortical brain tissue exhibiting neuronal axons and dendrites. The dendrites possess protrusions, known as dendritic spines, which form synapses with axons.Incubate the tissue with osmium-ferrocyanide, which binds to lipids, followed by another osmium application, which enhances structural contrast for imaging.Stain with a heavy metal compound that binds to macromolecules and enhances contrast.Dehydrate using increasing alcohol concentrations for resin...

Dendritic Spine Quantification Using an Automatic Three-Dimensional Neuron Reconstruction Software

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Cited by 2 •

2024

Dendritic spines are post-synaptic compartments of most excitatory synapses. Alterations to dendritic spine morphology occur during neurodevelopment, aging, learning, and many neurological and psychiatric disorders, underscoring the importance of reliable dendritic spine analysis. This protocol describes quantifying dendritic spine morphology accurately and reproducibly using automatic three-dimensional neuron reconstruction software.

Research

JoVE Journal - Neuroscience
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A Method for 3D Reconstruction and Virtual Reality Analysis of Glial and Neuronal Cells

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Cited by 11 •

2019

The described pipeline is designed for the segmentation of electron microscopy datasets larger than gigabytes, to extract whole-cell morphologies. Once the cells are reconstructed in 3D, customized software designed around individual needs can be used to perform a qualitative and quantitative analysis directly in 3D, also using virtual reality to overcome view occlusion.

Studying Protein Function and the Role of Altered Protein Expression by Antibody Interference and Three-dimensional Reconstructions

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Cited by 2 •

2016

Controlling protein expression is not only essential to every organism alive, but also an important strategy to investigate protein functions in cellular models. The protocol presented shows the application of antibody interference in mammalian cells including primary hippocampal neurons and demonstrates the use of three-dimensional reconstructions in studying protein function.

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