Laser-induced Fluorescence

Laser-induced fluorescence is an optical measurement technique that detects fluorescent light emitted by molecules after excitation with a focused laser beam. When the laser wavelength matches an absorption transition, fluorescent species absorb photons, briefly enter an excited electronic state, and release longer-wavelength light as they return toward the ground state; the emitted intensity reflects species concentration and local conditions. In bioengineering, laser-induced fluorescence enables sensitive, noncontact analysis of cells, proteins, metabolites, and fluorescent labels in microfluidic devices and biological tissues. Its high spatial and temporal resolution supports imaging, flow measurements, diagnostics, and monitoring of biochemical and cellular processes.

Laser-induced Fluorescence - Related Videos

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JoVE Journal - Engineering
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Laser-induced Forward Transfer of Ag Nanopaste

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Cited by 13 •

2016

We demonstrate the use of the Laser-induced forward transfer technique (LIFT) for the printing of high-viscosity Ag paste. This technique offers a simple, low temperature, robust process for non-lithographically printing microscale 2D and 3D structures.

Research

JoVE Journal - Medicine

A Mouse Model for Laser-induced Choroidal Neovascularization

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Cited by 87 •

2015

Here, we present the mouse laser-induced choroidal neovascularization (CNV) protocol, an experimental model that re-creates the vascular hallmarks of neovascular age-related macular degeneration (AMD). Once mastered, it can reliably and effectively induce CNV as a model system to test various experimental measures.

Performing Laser-Induced Brain Injury in a Rat Model

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2025

This video demonstrates a procedure to generate precise, controlled brain injury in the rat motor cortex using a laser.

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JoVE Journal - Engineering
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Investigation of Early Plasma Evolution Induced by Ultrashort Laser Pulses

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Cited by 2 •

2012

An experimental method to examine the early plasma evolution induced by ultrashort laser pulses is described. Using this method, high quality images of early plasma are obtained with high temporal and spatial resolutions. A novel integrated atomistic model is used to simulate and explain the mechanisms of early plasma.

Flapping Soft Fin Deformation Modeling using Planar Laser-Induced Fluorescence Imaging

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Cited by 1 •

2022

The present protocol involves the measurement and characterization of 3D shape deformation in underwater flapping fins built with polydimethylsiloxane (PDMS) materials. Accurate reconstruction of these deformations is essential for understanding the propulsive performance of compliant flapping fins.

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