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New model extracts stiffness and fluidity from AFM data in minutes, enabling fast, accurate mechanical characterization of living cells at single-cell resolution.
2don MSN
AI-driven atomic force microscopy platform developed for decoding human immune cell mechanics
Macrophages drive key immune processes including inflammation, tissue repair, and tumorigenesis via distinct polarization ...
At school, it's often presented as a tidy double helix but scientists are revealing the varied and intricate shapes of DNA molecules. DNA is a molecule found in just about every living cell. Because ...
(MENAFN- GlobeNewsWire - Nasdaq) The global atomic force microscopy (AFM) market is anticipated to expand from USD 541.8 million in 2025 to USD 762.2 million by 2030, with a CAGR of 7.1%.
DUBLIN--(BUSINESS WIRE)--The "Atomic Force Microscopy Market by Offering (AFMs, Probes, Software), Grade (Industrial, Research), Application (Semiconductors ...
A new AI-powered method combines atomic force microscopy with deep learning to rapidly and accurately identify macrophage polarization states without labels or dyes. This approach offers real-time, ...
At many universities, student researchers rarely get the chance to even see a transmission electron microscope, or TEM, up ...
Multifocus microscope uses 25 tiny cameras to image rapid biological processes over the entire volume of small living organisms ...
Peking University, Aug 18, 2025: Professor Xi Peng’s team from the College of Future Technology at Peking University has recently developed a triangle structured illumination microscopy (SIM), which ...
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