Dendritic Spines

Dendritic spines are small, actin-rich protrusions on neuronal dendrites that receive most excitatory synaptic inputs and help shape communication between brain cells. Their flexible structure forms a specialized postsynaptic compartment: activity at an incoming synapse triggers receptor signaling and actin remodeling, which can enlarge, stabilize, or eliminate spines during synaptic plasticity. In biology, studying spine density, morphology, and dynamics helps explain how neural circuits develop, adapt during learning and memory, and become disrupted in neurodevelopmental and neurodegenerative disorders. Imaging and molecular analyses of spines therefore connect cellular structure with nervous-system function and disease mechanisms.

Dendritic Spines - Related Videos

Research

JoVE EoE - Neuroimaging

Quantification of Dendritic Spines Using Confocal Microscopy Imaging

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2025

Source: Gouder, et. al. Three-dimensional Quantification of Dendritic Spines from Pyramidal Neurons Derived from Human Induced Pluripotent Stem Cells. J. Vis. Exp. (2015).This video demonstrates the imaging and analysis of dendritic spines in transduced, immunolabeled pyramidal neurons using confocal microscopy. Background noise is reduced, and dendrites are traced by estimating their diameter and length. Automated spine segmentation involves setting parameters for dendrite and spine dimensions...

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.

Voltage-sensitive Dye Recording from Axons, Dendrites and Dendritic Spines of Individual Neurons in Brain Slices

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Cited by 13 •

2012

An imaging technique for monitoring of membrane potential changes with sub-micrometer spatial and sub-millisecond temporal resolution is described. The technique, based on laser excitation of voltage-sensitive dyes, allows measurements of signals in axons and axon collaterals, terminal dendritic branches, and individual dendritic spines.

Imaging Dendritic Spines of Rat Primary Hippocampal Neurons using Structured Illumination Microscopy

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Cited by 10 •

2014

This article describes a working protocol to image dendritic spines from hippocampal neurons in vitro using Structured Illumination Microscopy (SIM). Super-resolution microscopy using SIM provides image resolution significantly beyond the light diffraction limit in all three spatial dimensions, allowing the imaging of individual dendritic spines with improved detail.

Two-Photon in vivo Imaging of Dendritic Spines in the Mouse Cortex Using a Thinned-skull Preparation

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Cited by 19 •

2014

Time-lapse imaging in the living animal provides valuable information on structural reorganization in the intact brain. Here, we introduce a thinned-skull preparation that allows transcranial imaging of fluorescently labeled synaptic structures in the living mouse cortex by two-photon microscopy.

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