A new study reveals how brain circuits between the entorhinal cortex and hippocampus stabilize memories during learning.
Newly decoded brain circuits make memories more stable as part of learning, according to a study led by NYU Langone Health ...
Researchers from the Yong Loo Lin School of Medicine, National University of Singapore (NUS Medicine), have uncovered a ...
The study shows that communication between the entorhinal cortex and the hippocampus’s CA3 region helps mice form stable maps of places.
News-Medical.Net on MSN
Study uncovers neural mechanisms behind memory stabilization
Newly decoded brain circuits make memories more stable as part of learning, according to a new study led by NYU Langone ...
Interesting Engineering on MSN
Neural implant tinier than a grain of salt tracks brain activity wirelessly for a year
C ornell researchers have built a neural implant so small it can balance on a grain of salt, yet powerful enough to ...
What if a doorbell never needed a battery and still sent signals wirelessly over long distances. This design can turn every ...
By using light instead of electrical connections, the implant can work deep in the brain without damaging tissue or triggering immune responses.
Cornell University researchers and collaborators have developed a neural implant so small that it can rest on a grain of salt ...
Over on YouTube [CuriousMarc] and [TubeTimeUS] team up for a multi-part series E&L MMD-1 Mini-Micro Designer Restoration. The ...
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