Volumetric fluorescence microscopy is an indispensable tool for comprehensive studies of cells and organs. Since the specimens are inherently three-dimensional (3D), the optimal imaging system should ...
In PhotoniX, researchers report a self-supervised deep learning method that denoises dynamic fluorescence images in vivo without requiring clean training data. The figure shows in vivo venule images ...
A new machine learning-based platform called MALVINA measures bacterial invasion, intracellular accumulation and DNA damage at single-cell resolution, exposing infection dynamics that conventional ...
(A–C) Representative images reconstructed by conventional method (left) and new method (right) of microtubules, nuclear pore complexes and F-actin samples. The regions enclosed by the white boxes are ...
Understanding how living cells grow, respond to stimuli, and change over time is central to modern cell biology and drug discovery. Many traditional imaging approaches rely on fluorescent labels, ...
As per SNS Insider, the Global Automated Microscopy Market is projected to reach USD 16.63 billion by 2035, growing at a 7.35% CAGR, while the U.S. market is projected to reach USD 5.19 billion, ...
A team from The Hebrew University of Jerusalem has introduced a new method for megapixel-scale fluorescence microscopy through complex scattering media. This approach resolves high-resolution images ...
In recent years, fluorescence quenching microscopy (FQM) 1-3 has emerged as a viable technique that allows for the swift, cost-effective, and accurate imaging of two-dimensional (2D) materials like ...
In this interview, Claudia Florindo talks about what matters when comparing benchtop fluorescence microscopes. What prompted Oxford Instruments to produce this buyer's guide, and what gaps or ...
Researchers commonly employ fluorescence microscopy to characterize molecular, cellular, and developmental processes in depth. Despite its benefits, scientists can face challenges when imaging their ...
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