News

Understanding human biology requires more than mapping our genes—we must also understand how gene expression is regulated to ...
The Berkeley mouse model of SCD was created in 1997 and the Townes model in 2006. Both have been widely used in sickle cell research. When they searched the literature, Weiss and Woodard found little ...
“In the not too distant past, it would cost at least $25,000 and take at least 6 months to make a knockout mouse,” said Russell Vance, a UC Berkeley professor of molecular and cell biology and ...
A team of Berkeley Lab and UC Berkeley researchers has ... Now they have applied copper-free click chemistry to the laboratory mouse, which is widely regarded as the model organism for studying ...
Researchers at the Conboy Lab at UC Berkeley have found that the transfusion of blood from old mice to a younger mouse triggers aging. The study acts on a hypothesis that suggests transfusing old ...
Glorious Model D 2 and O 2 Pro - Designs and Aesthetics. Glorious gets surprisingly granular with its individual Pro mouse offerings to the point where it's difficult to tell them apart.
Mice can develop a sense of embodiment of an artificial limb, similar to humans who participate in the rubber-hand illusion experiment, according to a study published in PLOS Biology by Luc ...
Berkeley Lab scientists have helped design a compound that suppresses symptoms of the devastating disease in ... in this neuron isolated from a Huntington's disease mouse model. view more . Credit ...
Surprisingly, 70% of the Berkeley mice died from the therapy and it only activated production of the healing fetal hemoglobin gene in 3.1% of mouse's stem cells.
UC Berkeley is working to address a rodent issue at two dormitories after students complained of mice, bed bugs, and other living conditions on Facebook. KTVU's Cristina Rendon reports.
Copper-free click chemistry used in mice Date: January 20, 2010 Source: DOE/Lawrence Berkeley National Laboratory Summary: Researchers have developed a unique, copper-free version of the molecular ...