A New Map Reveals the Complicated World in Which Cells Seek to Repair Damaged DNA
UC San Diego scientists develop an interactive software that enables scientists to better investigate the DNA damage response.
UC San Diego scientists develop an interactive software that enables scientists to better investigate the DNA damage response.
Researchers have found a way to distinguish among hand gestures that people are making by examining only data from noninvasive brain imaging, without information from the hands. The results are an early step in a safe brain-computer interface that may one day help patients with movement challenges.
Researchers at the University of California San Diego have identified the conditions for cell metabolism to emerge on the early Earth, shedding new light on the origins of life itself, along with the fundamental nature of biological carbon fixation.
Biologists have used machine learning, a type of AI, to identify “synthetic extreme” DNA sequences with specifically designed functions in gene activation. They tested 50 million DNA sequences and found synthetic DNA sequences with activities that could be useful in biotechnology and medicine.
Across disciplines and specialties, from cells to systems, artificial intelligence is on its way to altering how we understand and treat disease.
A new paper on wireless connectivity from the lab of Dinesh Bharadia, an affiliate of the UC San Diego Qualcomm Institute (QI) and faculty member with the Jacobs School of Engineering, introduces a new technique for increasing access to the 5G-and-beyond millimeter wave network.
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