Fluorescent Marker Analysis

Fluorescent marker analysis is the measurement and interpretation of light emitted by fluorescent labels to identify, locate, or quantify biological molecules, cells, and structures. When a fluorescent marker absorbs light at an excitation wavelength, it releases part of that energy as longer-wavelength emission; instruments such as fluorescence microscopes or plate readers detect the resulting signal and relate its intensity or distribution to the target of interest. In biology, this approach supports protein localization, cell tracking, gene expression studies, and evaluation of cellular processes. Careful controls and image or signal analysis help distinguish specific labeling from background fluorescence and improve quantitative reliability.

Fluorescent Marker Analysis - Related Videos

Research

JoVE Journal - Neuroscience

Three-dimensional Confocal Analysis of Microglia/macrophage Markers of Polarization in Experimental Brain Injury

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Cited by 51 •

2013

A way to gain new insights into the complexity of the brain inflammatory response is presented. We describe immunofluorescence-based protocols followed by three-dimensional confocal analysis to investigate the pattern of co-expression of microglia/macrophage phenotype markers in a mouse model of focal ischemia.

Rapid Analysis and Exploration of Fluorescence Microscopy Images

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Cited by 3 •

2014

Here we describe a workflow for rapidly analyzing and exploring collections of fluorescence microscopy images using PhenoRipper, a recently developed image-analysis platform.

Automated Analysis of C. elegans Fluorescence Images using SegElegans

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2025

Here we provide instructions on effectively utilizing SegElegans, a deep learning system we developed for the automated segmentation of individual worms in widefield microscopy images, for subsequent use in image analysis software such as ImageJ. We provide ways to use the system both online and offline.

Transduction to Label PDX Tumor Cells: Introducing Lentivirus Expressing Fluorescent Marker into the Tumor Cell In Vitro

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2023

The following video describes a technique of transduction to label (patient-derived xenografts) PDX tumor cells, which is used for introducing lentivirus expressing green-fluorescent protein and luciferase reporters into the tumor cell in vitro.

Research

JoVE Journal - Biology
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Lineage Tracing and Clonal Analysis in Developing Cerebral Cortex Using Mosaic Analysis with Double Markers (MADM)

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Cited by 28 •

2020

A protocol to perform lineage tracing and functional genetic analysis of candidate genes at a single cell level using mosaic analysis with double markers (MADM) is presented. MADM clonal analysis provides a quantitative framework to measure the proliferative behavior, cellular output, and lineage relationship of individual progenitors and their daughter cells.

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