An AI model trained on large amounts of genetic data can predict whether bacteria will become antibiotic-resistant. The new study shows that antibiotic resistance is more easily transmitted between ...
In a new study published March 21 in Proceedings of the National Academy of Sciences, Henry Mattingly of the Simons Foundation's Flatiron Institute presents a new computational method for predicting ...
An AI model trained on large amounts of genetic data can predict whether bacteria will become antibiotic-resistant. The new study shows that antibiotic resistance is more easily transmitted between ...
With the rapid development of antibiotics in the 1930s, phage therapy – using viruses known as bacteriophages or phages to tackle bacterial infections – fell into oblivion. But as the current rise in ...
A new study reveals that bacteria can survive antibiotic treatment through two fundamentally different "shutdown modes," not ...
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A research team of Prof. Eijiro Miyako at the Japan Advanced Institute of Science and Technology (JAIST) has discovered that the bacterium Ewingella americana, isolated from the intestines of Japanese ...
Bacteria that rarely tumble are likely to get trapped by obstacles, slowing dispersion. Bacteria that tumble frequently often “retrace their steps,” also slowing dispersion. Dispersion is maximized by ...