Autofluorescence Flim

Autofluorescence fluorescence lifetime imaging (FLIM) is a label-free optical method that maps how long naturally fluorescent molecules remain excited after light stimulation, providing functional information without added dyes. In practice, brief excitation pulses trigger emission from endogenous fluorophores, and detectors record the time-dependent decay at each image location; analyzing these lifetimes reveals molecular environments that intensity alone may not distinguish. In bioengineering, autofluorescence FLIM supports label-free assessment of cellular metabolism, tissue organization, engineered constructs, and disease-related changes, helping researchers monitor living systems and evaluate biomaterials or therapies while minimizing perturbation.

Autofluorescence Flim - Related Videos

Research

JoVE EoE - Biomolecular Interaction Detection Techniques

FLIM-FRET Imaging for Characterization of Protein-Protein Interactions in Live Bacteria

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2025

The video describes the FLIM-FRET imaging technique to determine the protein-protein interaction in live bacteria expressing cytoplasmic proteins labeled with fluorescent proteins, a donor eGFP, and acceptor mCherry. The combined technique also allows the quantification of the interacting proteins.

Quantitative Fundus Autofluorescence for the Evaluation of Retinal Diseases

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Cited by 22 •

2016

The retinal pigment epithelium (RPE) supports the sensory retina through recycling visual cycle byproducts, which accumulate as lipofuscin. These products are autofluorescent and can be qualitatively imaged in vivo. Here, we describe a method to quantitatively image RPE lipofuscin using confocal scanning laser ophthalmoscopy.

Autofluorescence Imaging to Evaluate Cellular Metabolism

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Cited by 15 •

2021

This protocol describes fluorescence imaging and analysis of the endogenous metabolic coenzymes, reduced nicotinamide adenine (phosphate) dinucleotide (NAD(P)H), and oxidized flavin adenine dinucleotide (FAD). Autofluorescence imaging of NAD(P)H and FAD provides a label-free, nondestructive method to assess cellular metabolism.

Simultaneous Label-Free Autofluorescence Multi-Harmonic Microscopy

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Cited by 3 •

2025

This protocol presents a step-by-step guide for the Simultaneous Label-free Autofluorescence Multi-harmonic (SLAM) microscopic technique, including details on how to generate the laser light source, prepare a tissue sample, conduct imaging, and analyze the data. SLAM advances nonlinear microscopy by measuring four complementary label-free contrasts to investigate the tissue microenvironment.

Research

JoVE Journal - Neuroscience
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Imaging Odor-Evoked Activities in the Mouse Olfactory Bulb using Optical Reflectance and Autofluorescence Signals

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Cited by 9 •

2011

This article presents the protocols of intrinsic optical signals and flavoproteins autofluorescence signals imaging to map odor-evoked activities at the surface of the olfactory bulb in mice.

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