By moving around, some cancer cells force attacking immune cells to just nibble at the edges rather than engulf them ...
A new two-photon fluorescence microscope developed at UC Davis can capture high-speed images of neural activity at cellular resolution thanks to a new adaptive sampling scheme and line illumination.
We know that the process of viral uptake into cells begins with interactions between proteins hemagglutinin and neuraminidase on the virus’s surface and sialic acid on the cell membrane, which trigger ...
Bell Labs is already highly recognized, but in its centennial year, the organization hoped to add more awards to burnish its ...
This novel hybrid microscope allows for the simultaneous imaging of the full 3D orientation and position of molecules within cells. Researchers from the Marine Biological Laboratory (MA, USA) have ...
The polarized diSPIM microscope, which can image full 3D orientation and position of molecules in cells. The instrument was constructed in the Hari Shroff lab at the National Institute of Biomedical ...
A new stem cell–based therapy challenges traditional pain treatment by using pain-sensing neurons to reduce inflammation and protect joints. Newly released preclinical data describes an unconventional ...
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Multicolor fluorescent tagging enables real-time visualization of RNA in living cells
An innovative three-color method for capturing images of mRNA inside live mammalian cells has been developed by UMass Amherst chemists.
At ELRIG 2025 Dr Barak Gilboa of Novo Nordisk unveiled a suite of AI-enabled approaches that turn brightfield microscopy from a low-contrast focusing aid into a powerful modality for high-content ...
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