Scientists found a hidden 'gatekeeper' in brain cells that may explain—and help stop—Alzheimer's damage.
A new study published in PLoS Biology has found that learning a new motor skill sets off two different types of cellular ...
Researchers posit that changes in the three-dimensional structure of DNA inside brain cells may play a key role in ...
An international study combining single-cell genomics, spatial transcriptomics and artificial intelligence has identified ...
Researchers used advanced MRI techniques to track how the human brain changes when learning a new motor sequence. They found ...
Researchers from Carnegie Mellon University's School of Computer Science, the University of Pittsburgh School of Medicine and the University of Washington have shed new light on Alzheimer's disease ...
An international research team led jointly by the University Medical Center Göttingen (UMG), the University of Göttingen and the University of Western Ontario in London, Canada, has shown that nerve ...
Researchers from Carnegie Mellon University's School of Computer Science, the University of Pittsburgh School of Medicine and the University of Washington shed new light on Alzheimer's disease that ...
Researchers have discovered that a microscopic skeleton inside neurons does much more than hold cells together. It acts as a gatekeeper that controls what brain cells absorb and when they absorb it.
A small device that senses light and reacts like a brain cell could change how machines see and think. Built at the nanoscale ...
Scientists used GAGE-seq (genome architecture and gene expression by sequencing), a technique that measures both gene expression and physical contacts in the same single cell.