Fluorescent Analyzer Detection

Fluorescent analyzer detection is a measurement technique that identifies and quantifies fluorescent signals from labeled molecules, cells, or biological samples. The analyzer illuminates a sample at an excitation wavelength, then separates and records the emitted light at longer wavelengths using optical filters or spectroscopic detectors; after calibration, signal intensity can indicate the amount or distribution of the target. In biological techniques, this approach supports nucleic acid and protein assays, cell characterization, and detection of molecular interactions. Its sensitivity and selectivity enable researchers to monitor biological processes, compare samples, and obtain quantitative data from complex specimens.

Fluorescent Analyzer Detection - Related Videos

Research

JoVE Journal - Biochemistry

Highly Sensitive and Rapid Fluorescence Detection with a Portable FRET Analyzer

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2016

This protocol describes the rapid and highly sensitive quantification of Förster resonance energy transfer (FRET) sensor data using a custom-made portable FRET analyzer. The device was used to detect maltose within a critical temperature range that maximizes detection sensitivity, enabling practical and efficient assessment of sugar content.

Combination of Adhesive-tape-based Sampling and Fluorescence in situ Hybridization for Rapid Detection of Salmonella on Fresh Produce

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Cited by 17 •

2010

This protocol describes a simple adhesive-tape-based approach for sampling of tomato and other fresh produce surfaces, followed by rapid whole cell detection of Salmonella using fluorescence in situ hybridization (FISH).

Detecting Bacterial Contamination Using Magneto-fluorescent Nanosensors

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2025

This video demonstrates a technique to detect bacterial contaminants in food and water samples using nanosensors. The target pathogenic bacteria are detected through a combination of magnetic relaxation and fluorescence emission modalities.

Research

JoVE Journal - Bioengineering
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Fluorescence detection methods for microfluidic droplet platforms

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Cited by 20 •

2011

Droplet-based microfluidic platforms are promising candidates for high throughput experimentation since they are able to generate picoliter, self-compartmentalized vessels inexpensively at kHz rates. Through integration with fast, sensitive and high resolution fluorescence spectroscopic methods, the large amounts of information generated within these systems can be efficiently extracted, harnessed and utilized.

Analyzing Amyloid Structures in a Tissue Section Using Fluorescence Lifetime Imaging Microscopy

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2025

Source: Nyström, S., et al., Imaging Amyloid Tissues Stained with Luminescent Conjugated Oligothiophenes by Hyperspectral Confocal Microscopy and Fluorescence Lifetime Imaging. J. Vis. Exp. (2017).This video demonstrates analyzing amyloid structures with fluorescence lifetime imaging microscopy or FLIM, using hFTAA dye to reveal compact cores as blue/green and unstable peripheries as red/yellow in color-coded images, reflecting amyloid organization.

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