High-speed atomic force m (HS-AFM) reveals nanoscale differences in small extracellular vesicles (sEVs), improving biomarker ...
The University of Oxford’s Department of Materials has entered a new era in microscopy with the arrival of a custom-built £3 ...
This study uses multimodal imaging—including SHG, SIMS, and TEM—to reveal how fibroblasts interact with 3D collagen scaffolds ...
The study reveals a novel bilayer metasurface, enhancing light manipulation with titanium dioxide nanostructures for ...
The DELTA technique offers a brain-wide view of synaptic protein alterations, enhancing understanding of neuronal connections ...
Today, modern measurement technologies enable high-precision detection of the movement of liquids and gases - and thus ...
Do blue light glasses actually help with sleep or eye strain? We explore the science behind blue light exposure, circadian ...
Innovative complex frequency excitations offer a breakthrough in wave-matter interactions, enabling enhanced performance in ...
Harvard physicists develop a novel cascaded-mode interferometer, enhancing light control for applications in fiber-optic ...
Graphene-based saturable absorbers show strong potential for high-speed laser systems. Learn how integrating graphene with silicon photonics improves mode-locking and ultrafast pulse generation.
An international team of researchers evaluated these dynamics using X-ray spectroscopy, which enables them to examine how individual atoms behave within a molecule, according to a study published ...
Curious about what planets look like through a telescope? This guide breaks down what you’ll see based on your telescope’s ...
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