New AI model decodes chemical signals guiding embryonic cell development
6 Articles
6 Articles
New AI model decodes chemical signals guiding embryonic cell development
As an embryo develops from a small cluster of stem cells, those once "blank slate" cells begin to take on more specialized roles like brain, liver, or muscle cells, and organize themselves into three-dimensional structures such as tissues and organs.
IRIS system historical mapping of chemical signals in embryos and indicates pathways for tissue culture in laboratory
System analyzes genetic activity and reveals how cells exchange signals during tissue development and formation
An AI model can read from the gene activity of a single cell which chemical messages it previously received from its neighbors. American researchers used it to predict which signal causes a cell to become lung tissue. The fact that it works is because every message turns out to leave a consistent trace, even in cell types on which the model […] More science? Read the latest articles on Scientias.nl .
Scientists at the Whitehead Institute for Biomedical Research have made a groundbreaking discovery that could revolutionize research into the development of organisms and the treatment of numerous diseases. Using an innovative artificial intelligence model, they have, for the first time, deciphered how cells communicate during embryonic development. The results of this research were published today in the prestigious scientific journal Nature Me…
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