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CBS Boston

CBS Boston features how researchers from MIT and Brigham and Women’s Hospital equipped a robot from Boston Dynamics with technology to enable remote vital sign monitoring.

Bloomberg

In this video, Bloomberg News spotlights how researchers from MIT and Brigham and Women’s Hospital have developed a new system that facilitates remote monitoring of a patient’s vital signs, as part of an effort to help reduce healthcare workers’ Covid-19 risk. Researchers have successfully measured temperature, breathing rate, pulse rate and blood oxygen saturation in healthy patients.”

Boston Herald

Researchers from MIT and Brigham and Women’s Hospital have repurposed a robotic dog from Boston Dynamics with technology that enables doctors to remotely measure a patient’s vital signs, reports Rick Sobey for The Boston Herald. “Using four cameras mounted on the dog-like robot, the researchers have shown that they can measure skin temperature, breathing rate, pulse rate and blood oxygen saturation in healthy patients,” writes Sobey.

TechCrunch

A wireless system developed by CSAIL researchers can monitor movement and vital signs without using video, while also preserving privacy, reports Darrell Etherington for TechCrunch. “The system has the potential to be used at long-term care and assisted living facilities to provide a higher standard of support, while also ensuring that the privacy of the residents of those facilities is respected,” writes Etherington.

Scientific American

Writing for Scientific American, Carolyn Barber spotlights how researchers from MIT are developing cheap, fast and easy to use diagnostics for Covid-19 that can deliver results in minutes. “They are called lateral flow assays, but manifestly they are paper-strip tests that have an antibody embedded on filter paper,” writes Barber. “If a saliva sample has coronavirus present, the antibody will bind that viral antigen, turning the test positive, much like a pregnancy test works.”

TechCrunch

MIT researchers outfitted a Boston Dynamics robotic dog with contactless vital sign monitoring equipment to help clinicians care for patients with Covid-19 without risking exposure, reports Darrell Etherington for TechCrunch. Etherington writes that the system “has the potential to not only reduce the risk of exposure for medical personnel, but also drastically reduce use of personal protective equipment.”

CNN

Reporting for CNN, Scottie Andrew highlights how researchers from MIT and Brigham and Women’s Hospital developed the iMASC, a silicon mask that can be reused and sterilized multiple times. Andrew notes that the mask is “a promising step toward addressing the critical healthcare supply shortages.”

STAT

Prof. Sangeeta Bhatia and senior postdoctoral associate Leslie Chan discuss their work developing a synthetic biosensor to diagnose lung disease. Chan explains that “instead of relying on naturally occurring breath volatiles, we wanted to be able to engineer the breath signal that we could use to monitor lung disease.”

Los Angeles Times

Researchers from MIT and Harvard have developed a new biosensitive ink “that indicates one’s health condition by changing its color,” writes Seung Jae Park for The Los Angeles Times. “With the subtle embellishment of the ink with tattoo artistry, the team aims to overcome the shortcomings of the current biomedical monitoring devices.”

CNBC

CNBC reporter Cory Stieg writes about how researchers from MIT and Brigham and Women’s Hospital created a new reusable silicon mask with slots for small disposable N95 filters. “The masks themselves can be quickly and easily sterilized and reused, and though the small filters must be thrown out, each mask requires much less N95 material,” writes Stieg.

Reuters

Reuters reporter Storay Karimi spotlights how the Afghan all-girls robotics team has designed a low-cost ventilator, based in part off the E-Vent device developed by MIT researchers.

Fast Company

Fast Company reporter Adele Peters writes that researchers from MIT and Brigham and Women’s Hospital have developed a new face mask that is made of silicon and designed to be reused and sterilized repeatedly. “We wanted to have a system that could be accessible and used by anyone globally,” says Prof. Giovanni Traverso

CBS Boston

Prof. Giovanni Traverso speaks with CBS Boston about a new silicon mask with N95 filters that can be reused and sterilized. “We recognize that not everybody has the sophisticated sterilization equipment but we also recognize that many folks around the world would have access to some kind of an oven or perhaps a solution of chlorine,” says Traverso.

WBUR

WBUR’s Carey Goldberg explores how MIT researchers developed a new CRISPR-based research tool that can be used to detect Covid-19. "A lot of things that we try fail," says research scientist Jonathan Gootenberg. "And that’s OK. Because sometimes you find these things that are really, really awesome."

United Press International (UPI)

UPI reporter Sommer Brokaw writes that researchers from MIT and Brigham and Women’s Hospital have created a new reusable silicon face mask with N95 filters. “The new masks have space for one or two N95 filters to be replaced after each use, and the rest of the rubber mask itself can be sterilized and reused many times,” writes Brokaw.