A new AI framework uses realistic synthetic AFM data to identify nanoscale features and autonomously target the most ...
AI-assisted atomic force microscopy identifies tiny surface structures such as nanostructures, DNA assemblies and bacterial cells, and directs ...
Atomic force microscopy, or AFM, is a widely used technique that can quantitatively map material surfaces in three dimensions, but its accuracy is limited by the size of the microscope's probe. A new ...
First invented in 1985 by IBM in Zurich, Atomic Force Microscopy (AFM) is a scanning probe technique for imaging. It involves a nanoscopic tip attached to a microscopic, flexible cantilever, which is ...
Neurological disorders are becoming an increasingly significant societal burden, highlighting the critical need for improved diagnostic and therapeutic approaches. Atomic force microscopy (AFM), known ...
Park Systems Corp., a leading provider of atomic force microscopy (AFM) and nanometrology solutions, opened the 2026 NANOscientific Symposium (NSS) series with NSS Korea, bringing nearly 200 ...
Researchers have captured the moment two DNA molecules zip together, overcoming their identical negative charges to pair up ...
Atomic force microscopy (AFM) has emerged as an indispensable tool for probing mechanical properties at the nanometre scale. By monitoring the deflection and vibration of a microfabricated cantilever ...
Invented in 1986 atomic force microscopy (AFM) has become a valuable tool for life scientists, offering the ability to image aqueous biological samples, like membranes, at nanometer resolution. The ...
High-speed atomic force microscopy (HS-AFM) is the only experimental technique to directly watch proteins in dynamic action. However, as a surface scanning technique with limited spatial resolution, ...
Thought LeaderProf. Dr. Sergei KalininProfessor & Chief Scientist in AI/ML for Physical SciencesUniversity of Tennessee & Pacific Northwest Laboratory In this interview, Prof. Dr. Sergei Kalinin ...