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Gizmodo

Gizmodo reporter Ed Cara writes that a study co-authored by Prof. Lydia Bourouiba argues that social distancing guidelines likely need to be updated in favor of a more nuanced approach. The researchers found that “rather than think exclusively about personal space,” writes Cara, “people should consider their circumstances.”

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.”

WHDH 7

WHDH spotlights MIT startup E25Bio, which is developing a new rapid test to diagnose Covid-19. The test being developed by E25Bio is a paper strip that can deliver test results in 15 minutes, WHDH explains.

Marketplace

Prof. James Collins speaks with Molly Wood of Marketplace about his work developing a faster, cheaper and more accurate Covid-19 diagnostic. Collins explains that his research group is “using synthetic biology to create highly sensitive, low-cost diagnostics, some that are now approved for use in clinical diagnostics labs, and now we’re moving towards point-of-care diagnostics, as well as at-home diagnostics.”

Fortune- CNN

A working paper from Prof. Arnold Barnett shows that keeping the middle seat open on an airplane significantly lowers the spread of Covid-19. “Such a policy lowers the risk of contracting COVID from 1 in 4,400 to 1 in 7,300,” writes Jeff John Roberts for Fortune.

CNBC

CNBC reporter Chloe Taylor writes that a study co-authored by MIT researchers examined Covid-19 antibody prevalence in Spain. The researchers found, “just 5% of participants presented with antibodies from point-of-care tests, while antibodies were detected in 4.6% of the blood samples.”

CNN

CNN reporter Allen Kim writes about how CSAIL researchers developed a new system that enables a robot to disinfect surfaces and neutralize aerosolized forms of the coronavirus. In the future, the researchers hope the robot could be used to enable autonomous UV disinfection “in other environments such as supermarkets, factories and restaurants.”

The Boston Globe

A study by MIT researchers finds that that the true number of Covid-19 related cases is likely 12 times higher than the official count, reports Jonathan Saltzman for The Boston Globe. The researchers found, “tougher policies to reduce transmission of the disease after WHO declared it a pandemic on March 11, along with extensive testing, could have prevented 197,000 deaths, nearly a third of the estimated fatalities.”

WHDH 7

WHDH reporter Emily Pritchard spotlights how CSAIL researchers have developed a new robotic system that is being used to help disinfect the Greater Boston Food Bank during the coronavirus pandemic. “We believe that is one piece of the puzzle in figuring out how to mitigate the spread of coronavirus,” says research scientist Alyssa Pierson.

TechCrunch

A new robotic system developed by CSAIL researchers uses UV-C light to kill viruses and bacteria on surfaces and aerosols, reports Darrell Etherington for TechCrunch. “Via cameras and sensors, the robot can map an indoor space, then navigate designed waypoints within that mapped area and disinfect as it goes, keeping track of the areas it has to disinfect,” writes Etherington.

WCVB

MIT researchers have developed a new robotic system that uses a UV-C light fixture to disinfect surfaces at the Greater Boston Food Bank’s warehouse staging area, reports Matt Reed for WCVB. Research scientist Alyssa Pierson explains that the ultraviolet light "breaks apart the kind of outer incasing or shell of these pathogens."

CNBC

MIT researchers have developed a skin patch that could be used to fight melanoma, reports Berkeley Lovelace Jr. for CNBC. “Our patch technology could be used to deliver vaccines to combat different infectious diseases,” explains Prof. Paula Hammond. “But we are excited by the possibility that the patch is another tool in the oncologists’ arsenal against cancer, specifically melanoma.”

TechCrunch

A sensor developed by MIT researchers could make diagnosing sepsis easier, quicker and more affordable, reports Darrell Etherington for TechCrunch. Etherington explains that the sensor, which “employs microfluidics to detect the presence of key proteins in the blood,” could have “a huge potential impact, as sepsis is one of the leading causes of death in hospitals.”

Straits Times

The Singapore-MIT Alliance for Research and Technology (SMART) has launched an initiative aimed at advancing cell therapy research, reports Shabana Begum for The Straits Times. “Imagine providing the right living cells…to each patient as quickly and safely as possible,” explains Prof. Krystyn Van Vliet. "Delivering on that promise requires exciting changes in the way we understand, engineer, measure and select cells."

Scientific American

Diana Kwon highlights the research of Prof. Katharina Ribbeck in an article for Scientific American about the biological benefits of mucus. “I like to call [mucus] the unsung hero of the body — it’s something that has such powerful effects over our health,” says Ribbeck.