Making agriculture more resilient to climate change
Researchers across MIT are working on ways to boost food production and help crops survive drought.
Researchers across MIT are working on ways to boost food production and help crops survive drought.
By snugly wrapping around neurons, these devices could help scientists probe subcellular regions of the brain, and might even help restore some brain function.
The new Tayebati Postdoctoral Fellowship Program will support leading postdocs to bring cutting-edge AI to bear on research in scientific discovery or music.
The combination of phototherapy and chemotherapy could offer a more effective way to fight aggressive tumors.
MIT’s innovation and entrepreneurship system helps launch water, food, and ag startups with social and economic benefits.
The innovations map the ocean floor and the brain, prevent heat stroke and cognitive injury, expand AI processing and quantum system capabilities, and introduce new fabrication approaches.
MIT researchers speed up a novel AI-based estimator for medication manufacturing by 60 times.
MIT researchers find that the first dose primes the immune system, helping it to generate a strong response to the second dose, a week later.
These zinc-air batteries, smaller than a grain of sand, could help miniscule robots sense and respond to their environment.
Bioengineer and artist David Kastner seeks to unlock the secrets of catalysis and improve science communication through eye-catching visuals.
A chip the size of a pack of cards uses fewer resources and a smaller footprint than existing automated manufacturing platforms and could lead to more affordable cell therapy manufacturing.
Twelve faculty members have been granted tenure in six units across MIT’s School of Engineering.
Using this new approach, researchers could develop drug compounds with unique pharmaceutical properties.
Graduate engineering program is No. 1 in the nation; MIT Sloan is No. 5.
Three innovations by an MIT-based team enable high-resolution, high-throughput imaging of human brain tissue at a full range of scales, and mapping connectivity of neurons at single-cell resolution.