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Related Concept Videos

Three-Dimensional Microscopy in Microbiology01:28

Three-Dimensional Microscopy in Microbiology

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Three-dimensional imaging techniques are essential in cell biology, allowing researchers to visualize intricate cellular structures with high resolution. Two prominent methods, Differential Interference Contrast Microscopy (DIC) and Confocal Scanning Laser Microscopy (CSLM), provide distinct advantages for imaging live and thick specimens, respectively.Differential Interference Contrast MicroscopyDIC microscopy enhances contrast in transparent, unstained samples by converting phase...
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Imaging Biological Samples with Optical Microscopy01:18

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Optical microscopy uses optic principles to provide detailed images of samples. Antonie van Leeuwenhoek designed the first compound optical microscope in the 17th century to visualize blood cells, bacteria, and yeast cells. In 1830, Joseph Jackson Lister created an essentially modern light microscope. The 20th century saw the development of microscopes with enhanced magnification and resolution.
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Phase-Contrast Microscopes
In-phase-contrast microscopes, interference between light directly passing through a cell and light refracted by cellular components is used to create high-contrast, high-resolution images without staining. It is the oldest and simplest type of microscope that creates an image by altering the wavelengths of light rays passing through the specimen. Altered wavelength paths are created using an annular stop in the condenser. The annular stop produces a hollow cone of...
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Updated: Sep 6, 2025

Quantitative Optical Microscopy: Measurement of Cellular Biophysical Features with a Standard Optical Microscope
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Functional imaging with dynamic quantitative oblique back-illumination microscopy.

Paloma Casteleiro Costa1, Bryan Wang2,3, Caroline Filan4

  • 1Georgia Institute of Technology, School of Electrical and Computer Engineering, Atlanta, Georgia, United States.

Journal of Biomedical Optics
|July 1, 2022
PubMed
Summary
This summary is machine-generated.

Dynamic quantitative oblique back-illumination microscopy (qOBM) offers label-free functional imaging of cellular dynamics. This technique reveals distinct cell populations and aids in monitoring mesenchymal stromal cells (MSCs) for therapeutic applications.

Failed At:

2026-06-19T13:48:49.258977+00:00

Keywords:
dynamicfunctional imaginglabel-freemicroscopyquantitative phase imagingstem cells

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