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Motherboard

In a new data sonification project, a team of MIT researchers have translated the vibrations of a spider’s web into music, writes Maddie Bender for Motherboard. The team "used the physics of spiderwebs to assign audible tones to a given string’s unique tension and vibration," writes Bender. "Summing up every string’s tone created an interactive model of a web that could produce sound through manipulation or VR navigation."

Gizmodo

A team of MIT researchers have translated the vibrations of a spider’s web into music, reports Isaac Schultz for Gizmodo. “Spiders live in this vibrational universe,” says Prof. Markus Buehler. “They live in this world of vibrations and frequencies, which we can now access. One of the things we can do with this instrument with this approach is we can, for the first time, begin to feel a little bit like a spider or experience the world like the spider does.”

Forbes

Forbes contributor Andrea Morris spotlights how MIT researchers have created a virtual reality experience that allows people to experience a spider web’s vibrations as music. "The team is working on a study exploring the boundaries between the kinds of compositions we humans create from synthetic instruments and our own conventional tuning, and compositions created from instruments that have been crafted and tuned by other biological beings, like spiders," writes Morris. 

New Scientist

MIT researchers have created a new audio-visual virtual reality that can provide a sense of what it’s like to be a spider by converting a spider web’s vibrations into sounds that humans can hear, reports Ian Morse for New Scientist. “The spider web can be viewed as an extension of the body of the spider, in that it lives within it, but also uses it as a sensor,” says Prof. Markus Buehler. “When you go into the virtual reality world and you dive inside the web, being able to hear what’s going on allows you to understand what you see.”

CNN

Prof. Yossi Sheffi speaks with CNN’s Zachary Wolf about how the Covid-19 pandemic has affected supply chains, impacting the supply of ketchup packets and causing delays in computer chips. “During the pandemic many industries reduced their orders and suppliers reduced their orders and capacity even further (because they anticipated that future orders will also be reduced),” says Sheffi. “When the economy came back, there was no capacity to snap right back.”

TechCrunch

MIT researchers have developed a new robot, dubbed RF Grasp, that can sense hidden objects using radio waves, reports Brian Heater for TechCrunch. “The tech allows RF Grasp to pick up things that are covered up or otherwise out of its line of vision,” writes Heater.

STAT

Prof. Emerita Nancy Hopkins speaks with Rebecca Sohn of STAT about the Boston Biotech Working Group’s goal of increasing the number of women leaders and entrepreneurs in biotech and her hopes for the future of women in biotech and the sciences. “You want people to feel that they are free to participate in all the things wherever it leads them,” says Hopkins. “So I think the goal is just that people who really want to do this [pursue biotech] don’t face any greater barrier than anybody else. That everybody has equal access and education to do as they want to.”

Boston Globe

A group of MIT scientists has announced a new plan, called the Future Founders Initiative, aimed at addressing gender inequities in the biotech industry, reports Anissa Gardizy for The Boston Globe. “If we can’t advance discoveries at the same rate for women and men, that means there are drugs, therapies, devices, and diagnostics that are not getting to where they can actually benefit people,” says President Emerita Susan Hockfield. “If as a region we want to continue to lead the world, the best thing to do is not squander our resources.”

Mashable

CSAIL researchers have developed a new material with embedded sensors that can track a person’s movement, reports Mashable. The clothing could “track things like posture or give feedback on how you’re walking.”

The Boston Globe

Prof. Matthew Vander Heiden has been selected to serve as the new director of MIT’s Koch Institute for Integrative Cancer Research, reports Anissa Gardizy for The Boston Globe. “We have broken down all these barriers, these traditional silos of fields, and I think that uniquely positions us to answer the big questions about cancer going forward," says Vander Heiden of the Koch Institute's work.

Forbes

To better understand what gives mucus its disease-protecting properties, MIT researchers created synthetic mucins, writes Forbes contributor Jackie Rocheleau. Understanding the antimicrobial properties of mucus “could offer a whole new way of treating infectious disease,” says Prof. Laura Kiessling.

Wired

Wired reporter Will Knight writes that MIT researchers have found that many of the key AI data sets used to train algorithms could contain many errors. “What this work is telling the world is that you need to clean the errors out,” says graduate student Curtis Northcutt. “Otherwise the models that you think are the best for your real-world business problem could actually be wrong.”

HealthCare Asia Daily

Singapore-MIT Alliance for Research and Technology (SMART) researchers have developed a new lab-free immune profiling assay that can be used “to better profile aggressive, rapidly changing host immune response in cases of infection, for example COVID-19,” reports HealthCare Asia Daily.

Popular Science

MIT researchers have created a new filter from tree branches that could provide an inexpensive, biodegradable, low-tech option for water purification, writes Shaena Montanari for Popular Science. “We hope that our work empowers such people to further develop and commercialize xylem water filters tailored to local needs to benefit communities around the world,” says Prof. Rohit Karnik.

Bloomberg

MIT researchers have analyzed the role of long-duration energy storage technologies and found that large storage systems have the potential to lower electricity prices in a carbon-free grid by up to 40%, writes Eric Roston for Bloomberg.