The origin of the electrical signals recorded at the brain’s surface by electrocorticography (ECoG) has long remained a mystery. Kris Bouchard, a staff scientist in the Biological Systems and Engineering (BSE) Division, led a seven-year research effort to understand precisely which neurons are generating the recorded signals.
Bacteria for Blastoff: Using Microbes to Make Supercharged New Rocket Fuel
A group of biofuel experts led by Berkeley Lab took inspiration from an extraordinary antifungal molecule made by Streptomyces bacteria to develop a totally new type of fuel that has projected energy density greater than the most advanced heavy-duty fuels used today, including the rocket fuels used by NASA.
Using Bacteria to Accelerate Carbon Dioxide Capture in Oceans
Peter Agbo, a staff scientist in the Chemical Sciences Division, with a secondary appointment in the Molecular Biophysics and Integrated Bioimaging (MBIB) Division, has proposed a novel method for direct ocean capture of carbon using microbes. Removing CO2 from the oceans will enable them to continue to do their job of absorbing excess CO2 from the atmosphere.
Q&A: Two Greenhouse Gases; One Microbe
Biosciences Area scientist, Deepika Awasthi has a big idea to capture two major greenhouse gases while producing a useful biochemical, by engineering a microbe to do the work.
Secrets of the Centromere Revealed by First Gapless Human Genome Sequence
The newly completed genome, dubbed T2T-CHM13, represents a major upgrade from the current reference genome, called GRCh38, which is used by doctors when searching for mutations linked to disease, as well as by scientists looking at the evolution of human genetic variation. Among other things, the new DNA sequences reveal never-before-seen detail about the region around the centromere, which is where chromosomes are grabbed and pulled apart when cells divide, ensuring that each “daughter” cell inherits the correct number of chromosomes.
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