Researchers at Rice University and The University of Texas MD Anderson Cancer Center have developed a compact, artificial intelligence-powered imaging device that could transform how clinicians detect ...
A comparison of traditional microscopy, digital imaging, and AI-powered tools for cell culture monitoring and analysis ...
Ligand-based drug design combines AI and QSAR modeling to prioritize drug candidates, minimizing preclinical failures and ...
Cells use a surprising “pearling” motion to evenly distribute mitochondrial DNA. This newly uncovered process may be key to ...
This study presents MPALM, a novel microscopy technique that captures nanoscale biomolecular dynamics, overcoming limitations ...
Sugar-based amphiphilic molecules, which contain a hydrophilic sugar headgroup and a hydrophobic segment, can assemble in water and act at interfaces, making them important models for detergents, ...
Ever wanted a slice of the cosmos at home? You can buy genuine meteorite as a keepsake for home. But did you know you can unveil incredible detail that you can't see with the naked eye, too? All it ...
Picture this: you’re in the middle of a video call, and your colleague shares a critical data chart or a brilliant slide on their screen. If you use a Windows PC, you already have one of the simplest, ...
Beam-sensitive zeolites are difficult to study at high resolution because traditional electron microscopy often damages or destroys their delicate crystal structures before meaningful data can be ...
In a recent review article published in the journal Microscopy Research & Technique, researchers focused on the integration of DL into optical microscopy, exploring its application in image ...
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