Puncta Quantification Analysis

Puncta Quantification Analysis is an image-analysis method for detecting and measuring discrete fluorescent spots, or puncta, in microscopy images. The approach typically separates puncta from background by applying intensity and size criteria, then quantifies features such as puncta number, area, fluorescence intensity, and density within defined regions of interest. In neuroscience, these measurements help assess synaptic protein clusters, neurotransmitter receptors, neuronal organelles, and other spatially localized structures. By converting microscopy observations into reproducible numerical data, puncta analysis supports comparisons across cells, experimental conditions, and disease models, strengthening studies of synaptic organization, neuronal signaling, and structural plasticity.

Puncta Quantification Analysis - Related Videos

Research

JoVE Journal - Neuroscience

Quantification of Filamentous Actin (F-actin) Puncta in Rat Cortical Neurons

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Cited by 8 •

2016

Filamentous actin (F-actin) plays an important role in spinogenesis, synaptic plasticity, and synaptic stability. Quantification of F-actin puncta is therefore a useful tool to study the integrity of synaptic structures. This protocol describes the procedures of quantifying F-actin puncta labeled with Phalloidin in low-density primary cortical neuronal cultures.

Quantification of Filamentous Actin Puncta in Rat Cortical Neurons

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2025

This video demonstrates the procedure for fluorescently staining rat cortical neurons for microscopy. It targets F-actin and dendritic proteins to analyze structural integrity and calculate F-actin density, which is crucial for studying neuronal function and health.

Quantification of Hydrogen Concentrations in Surface and Interface Layers and Bulk Materials through Depth Profiling with Nuclear Reaction Analysis

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Cited by 21 •

2016

We illustrate the application of 1H(15N,αγ)12C resonant nuclear reaction analysis (NRA) to quantitatively evaluate the density of hydrogen atoms on the surface, in the volume, and at an interfacial layer of solid materials. The near-surface hydrogen depth profiling of a Pd(110) single crystal and of SiO2/Si(100) stacks is described.

Automated Quantification and Analysis of Cell Counting Procedures Using ImageJ Plugins

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Cited by 90 •

2016

This paper describes the quantification of hemocytometer and migration/invasion micrographs through two new open-source ImageJ plugins Cell Concentration Calculator and migration assay Counter. Furthermore, it describes image acquisition and calibration protocols as well as discusses in detail the input requirements of the plugins.

In Situ Detection and Single Cell Quantification of Metal Oxide Nanoparticles Using Nuclear Microprobe Analysis

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Cited by 3 •

2018

We describe a procedure for the detection of chemical elements present in situ in human cells as well as their in vitro quantification. The method is well-suited to any cell type and is particularly useful for quantitative chemical analyses in single cells following in vitro metal oxide nanoparticles exposure.

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