Discover how a self-organizing “pencil beam” laser could allow for faster and more precise biomedical imaging.
The authors provide valuable findings showing that GM-CSF prevents the loss of ILC3 populations during gut inflammation and inhibits pro-inflammatory cytokine production. They combine a preclinical ...
Digital image sensors (DIS), devices that capture images by converting light patterns into electrical signals, are integrated ...
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CryoSPARC is changing how we see molecules
CryoSPARC’s advances are pushing cryo-electron microscopy into a new era of speed, automation, and resolution. From handling complex GPCR targets to resolving proteins once thought too small for ...
A diaphragm-backed turbomolecular pump pumps the samples, ensuring an oil-free environment for testing. The LDV laser beam ...
For the first time, researchers have mapped how the boundaries of magnetic nanostructures behave on extremely short timescales. The work of physicist Johan Mentink of Radboud University shows that ...
White matter pathways allow distant parts of the brain to communicate, supporting memory, emotion, and language. One such ...
Abstract: Photoacoustic microscopy (PAM) is a novel implementation of photoacoustic imaging (PAI) for visualizing the 3D bio-structure, which is realized by raster scanning of the tissue. However, ...
In a study published in Cell Reports Methods, Prof. DAI Lei's team from the Shenzhen Institutes of Advanced Technology (SIAT) of the Chinese Academy of Sciences developed a sequential error-robust ...
Scientists have provided the first direct experimental evidence of so-called “dark points” within light waves.
BackgroundFluorescence microscopy is an indispensable tool for observing cellular dynamics and internal structures. To reduce photobleaching and ...
A cryogen-free optical-coupled scanning probe microscope based on remote helium liquefaction has enabled months-long ...
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