All cells can generate bioelectric signals through their plasma membrane, and therefore naturally exist in our bodies. Cancer growth interferes with local ionic, membrane and epithelium environments, ...
Add Yahoo as a preferred source to see more of our stories on Google. Your cells constantly generate and conduct electricity that runs through your body to perform various functions. One such example ...
Researchers have developed a way to achieve an ultra-high bioelectric signal from human embryonic stem cells. Using direct current-voltage methods and few-layered 2D molybdenum disulphide (MoS2) ...
Tom has a Master's degree in Journalism. His editorial work covers anything from archaeology and the environment to technology and culture. Tom has a Master's degree in Journalism. His editorial work ...
At first glance, Mike Levin's lab looks like any standard biology lab with its shelves of petri dishes containing small, brown, semitransparent flatworms called planaria, one of the organisms his lab ...
Near the entrance to Michael Levin's lab at Tufts, four deer antlers are mounted on wooden boxes. They represent an incredible feat of regeneration in mammals: Deer shed their antlers annually and ...
Mustafa Djamgoz’s interest in bioelectricity began with the first-hand experience of electricity coursing through his own biology. As a teenager growing up on the island of Cyprus, Djamgoz and a ...
Researchers led by biologists at Tufts University have discovered that the brains of developing frog embryos damaged by nicotine exposure can be repaired by treatment with certain drugs called ...
A new method developed by researchers at Singapore University of Technology and Design (SUTD) can potentially ensure patient safety for future stem cell-based therapies, by enhancing native stem cell ...
Your skin cells can generate electricity when wounded. Torsten Wittmann, University of California, San Francisco/NIH via Flickr, CC BY-NC Your cells constantly generate and conduct electricity that ...
(Nanowerk Spotlight) For the first time, Singaporean researchers have developed a method using two-dimensional molybdenum disulfide (2D-MoS2) sheets to achieve ultra-high bioelectric signals from ...