Fluorescent Bead Imaging

Fluorescent bead imaging is a microscopy-based method that uses light-emitting microspheres to visualize, track, and quantify biological or engineered structures and processes. When illuminated at an appropriate excitation wavelength, fluorescent beads emit light at a longer wavelength, allowing their positions and movement to be recorded by fluorescence microscopy; surface functionalization can further target specific molecules or materials. In bioengineering, the method supports measurements of fluid flow, particle transport, cellular forces, biomolecular interactions, and tissue or scaffold properties. By converting otherwise difficult-to observe dynamics into optical signals, fluorescent bead imaging provides quantitative data for designing biomaterials, evaluating microfluidic systems, and studying cell-environment interactions.

Fluorescent Bead Imaging - Related Videos

Research

JoVE Journal - Immunology and Infection

Antibody Labeling with Fluorescent Dyes Using Magnetic Protein A and Protein G Beads

0 Views •

Cited by 3 •

2016

The on-bead method for labeling antibodies with small molecules enables labeling of a small amount of antibodies directly from cell media. This method is compatible with amine and thiol chemistry, and can handle multiple samples in parallel, manually or using automated platforms.

Non-invasive In Vivo Fluorescence Optical Imaging of Inflammatory MMP Activity Using an Activatable Fluorescent Imaging Agent

0 Views •

Cited by 4 •

2017

This paper explains the application of fluorescent imaging using an activatable optical imaging probe to visualize the in vivo activity of key matrix metalloproteinases in two different experimental models of inflammation.

Wide-field Fluorescent Microscopy and Fluorescent Imaging Flow Cytometry on a Cell-phone

0 Views •

Cited by 32 •

2013

We review our recent results on the integration of fluorescent microscopy and imaging flow cytometry tools on a cell-phone using compact and cost-effective opto-fluidic attachments. These cell-phone based micro-analysis devices might be useful for cytometric analysis, such as performing various cell counting tasks as well as for high-throughput screening of e.g., water samples in resource limited settings.

Rapid Analysis and Exploration of Fluorescence Microscopy Images

0 Views •

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.

Live Imaging of the Drosophila Pupal Eye Using Fluorescence Microscopy

0 Views •

2025

Source: Hellerman, M. B., et al. Live-imaging of the Drosophila Pupal Eye. J. Vis. Exp. (2015)The video demonstrates a live-imaging technique to study eye patterning in a Drosophila melanogaster pupa. Green fluorescent protein (GFP)-tagged markers enable visualization of cellular organization and differentiation during the formation of the developing eye structure.

View All Results

FAQs

Related Topics