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AI-powered staining in microbiology: Researchers introduce virtual Gram staining of label-free bacteriaA trained neural network model processes a 3D axial stack of darkfield microscopy images, rapidly processing the 3D optical scattering information of bacterial cells to digitally stain label-free ...
In this simplified diagram of gram staining, bacterial cells are first treated with a purple dye called crystal violet. The dye gets into the cells’ peptidoglycan layer (gray), tinting it purple.
The new biosensor promises to speed treatment of bacterial ... developed a way to measure the growth and drug susceptibility of individual bacterial cells without the use of a microscope.
See how they grow: Monitoring single bacteria without a microscope. ScienceDaily . Retrieved June 3, 2025 from www.sciencedaily.com / releases / 2011 / 01 / 110118101523.htm ...
But microscopy studies revealed that the strands were actually bacteria so large that they can be seen without the help of a microscope. ... most bacterial species' cells are about 2 micrometers ...
Fluorescent microscopy has revolutionized the study of bacteria and helped scientists to understand various aspects of their growth, development, and pathogenesis. Bacterial cells are around 1 ...
There's a problem in cell biology research: to study what happens inside a cell, it has to be destroyed. When scientists use a traditional microscope to observe a cell, they use stains ...
Gram-positive bacteria are bacteria that contain a thick cell wall. During the Gram staining process — a test that experts use to view the bacteria under a microscope — they appear purple or blue.
How Bacterial Cells Leave Their Biofilm Community A new imaging technique reveals how single bacterial cells leave their biofilm community. News . Published: May 9, 2025 ... Bridges said it was a ...
Here, we investigate the kinetics of individual bacterial cell death using a novel high-speed atomic force microscope optimized for imaging live cells in real time.
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