Glowing protein allows deeper looks at living tissues
Researchers have designed a fluorescent protein that absorbs and emits longer wavelengths of NIR light that penetrates deep into living biological tissue.
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Researchers have designed a fluorescent protein that absorbs and emits longer wavelengths of NIR light that penetrates deep into living biological tissue.
How does the brain produce behavior? Studying the brain during behavior is most informative when the animal is free to interact with its environment in any way it chooses.
To better understand how viruses breach the protective layers of cells that line the airways and gut, Duke University researchers used multimodal micr
For the first time, scientists have been able to make a three-dimensional, real-time recording of the moment a virus hijacks a cell, giving us a deeper level of understanding of how infections take hold in the body.
Weill Cornell Medicine researchers have developed a computational method to map the architecture of human tissues in unprecedented detail. Their approach promises to accelerate studies on organ-scale cellular interactions and could enable powerful new diagnostic strategies for a wide range of diseases.