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BetaBoston

Nidhi Subbaraman reports for BetaBoston that MIT researchers have devised an ingestible microphone that allows doctors to monitor a patient’s vital signs. “A key innovation was developing algorithms that would distinguish important signals…from the noisy gurgling of the gut, and then translate them into numbers a physician can read and understand,” writes Subbaraman. 

BBC News

Graduate student Daniel McDuff is developing a computer system that can read human emotions by monitoring facial movements, reports Jane Wakefield for BBC News. “It translates that into seven of the most commonly recognized emotional states - sadness, amusement, surprise, fear, joy, disgust and contempt,” McDuff explains.

Wired

Researchers at MIT have developed an ingestible sensor that can measure vital signs without any external contact, reports Emily Reynolds for Wired. “The sensor works by using microphones—like ones found in mobile phones—that are able to pick up sound waves from the heart and lungs,” writes Reynolds.

Scientific American

Scientific American reporter David Biello writes about the growth of clean energy technologies, highlighting a new MIT report that finds that commitments from the U.S., Europe and China to cut greenhouse gas emissions could drive cost reductions in wine and solar technologies.  

Wired

Emily Reynolds reports for Wired that NASA has awarded an R5 “Valkyrie” humanoid robot to a team led by Prof. Russ Tedrake. Reynolds explains that the team “will develop algorithms to make the robot more dexterous” so that they could potentially take the place of humans during extreme space missions. 

The Washington Post

A team led by Prof. Russ Tedrake has been awarded one of NASA’s R5 “Valkyrie” robots to develop software that could allow humanoid machines to assist astronauts in space, reports Rachel Feltman for The Washington Post. Feltman writes that Tedrake’s team was awarded the robot based on its strong performance in the DARPA Robotics Challenge.

CBS News

NASA has awarded two humanoid robots to research groups at MIT and Northeastern, reports Brian Mastroianni for CBS News. The robots “are seen as potential tools to aid astronauts in future Mars expeditions,” writes Mastroianni. “They could potentially assist or even replace humans in extreme environments.”

Popular Science

Alexandra Ossola of Popular Science reports on an ingestible sensor that allows doctors to monitor vital signs by listening to the body’s gastrointestinal tract. The device could help treat “chronic illnesses, monitor soldiers in battle, or even help athletes train more effectively,” writes Ossola.

NPR

MIT researchers have developed an ingestible sensor that can monitor vital signs, reports Rae Ellen Bichell for NPR. "Trauma patients are a really clear winner here, because we can do vital sign monitoring without touching the skin," says Albert Swiston of Lincoln Laboratory.

Boston Magazine

Olga Khvan reports for Boston Magazine that a team from MIT has been awarded a humanoid robot for research and development. “The R5—nicknamed Valkyrie—is a humanoid robot designed to assist during human missions to Mars by completing disaster-relief maneuvers,” writes Khvan.

BetaBoston

A team led by Prof. Russ Tedrake has been awarded a humanoid robot from NASA to develop software for future space missions, reports Hiawatha Bray for BetaBoston. NASA is “interested in modifications that would let the machines assist human astronauts during long-duration space missions,” writes Bray.

New York Times

Karen Weintraub writes for The New York Times about Professor Rosalind Picard’s work developing wearable, stress-measuring devices. “If you want to learn about human variability, measure stress,” says Picard.

CNBC

CNBC reporter Robert Ferris writes that MIT researchers are developing a fabric that acts as a “second skin” and has vents that open when a person begins sweating. Ferris explains that, “the vents open and close by means of tiny bacteria borrowed from an unlikely place — Japanese cooking.”

BetaBoston

Nidhi Subbaraman reports for BetaBoston on new jetpack technology being developed by a team from MIT, Draper, and NASA. “The team has tested the technology in a virtual reality simulator, where astronauts were challenged to tackle a Martian landscape obstacle course dotted with orange pylons while wearing jetpacks,” writes Subbaraman. 

Boston.com

MIT researchers have devised a technique for desalinating water, reports Nina Godlewski for Boston.com. “The process, called shock electrodialysis, filters water through a material made of small glass particles,” writes Godlewski. “When an electric current is introduced to the system, the water divides into areas of high or low salt concentration.”