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Electrical engineering and computer science (EECS)

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The Christian Science Monitor

Christian Science Monitor reporter Joe Uchill writes about a new system developed by MIT researchers that can automatically detect and fix software bugs by borrowing functionality from other applications.  Uchill explains that the researchers hope “automating the detection and patching processes will reduce the chance that an attacker can take advantage of the bug within a system.”

Los Angeles Times

Researchers at MIT have developed tools that could one day allow intestinal bacteria to monitor, diagnose and treat diseases, writes Eryn Brown for The Los Angeles Times. "Just as you'd program computers, we're starting to learn how to program cells by modifying their DNA," says Prof. Timothy Lu.

Financial Times

Financial Times reporter Richard Waters writes about how graduate student Abe Davis’ motion magnification research could be used to create more realistic virtual worlds. Waters writes that Davis’ work presents the “possibility of capturing and manipulating real-world objects in virtual space.”

BBC News

In this video, BBC Click’s LJ Rich explores how researchers at MIT CSAIL have devised a system that can reconstruct sound from a video recording. “I think what’s really different about this technology is that it provides you with a way to image this information,” says graduate student Abe Davis.

Fortune- CNN

MIT researchers have devised a system that repairs software bugs similar to the way a surgeon applies skin grafts, writes Jonathan Vanian for Fortune. “The new system detects bugs, takes healthy code from a publicly available source, and then grafts it onto the sick software,” Vanian explains. 

Scientific American

Last weekend Institute Professor Mildred Dresselhaus became the first woman to receive the IEEE Medal of Honor for her pioneering work with carbon materials, reports Melissa Lott for Scientific American. Lotts writes that Dresselhaus is known “for her work with buckminsterfullerenes (buckyballs), nanotubes and graphene as well as her dedicated work ethic and caring nature.”

CNBC

MIT engineers have developed an ultralow-power circuit that can efficiently harvest energy from solar power, reports Robert Ferris for CNBC. Ferris explains that the circuit “lends itself well to creating self-powering electronic sensors that can be used in a wide range of applications.”

CNN

In this video, CNN examines a new printable origami robot developed by MIT researchers that can dissolve in a variety of liquids. CNN explains that the researchers hope that the robot could one day be used to perform medical tasks inside the human body.  

Foreign Affairs

The July/August edition of Foreign Affairs features an in-depth piece by Prof. Daniela Rus on the future of robotics. Rus writes that robots will extend the digital revolution “into the physical realm and deeper into everyday life, with consequences that will be equally profound.”

New Scientist

New Scientist reporter Rowan Hooper writes about how MIT researchers have developed a 1.7-centimeter long origami robot that can self-fold, walk and swim. Hooper explains that, “using liquid-soluble materials, different versions of the robot can dissolve in either water or acetone, leaving only the permanent magnet behind.”

BetaBoston

BetaBoston reporter Nidhi Subbaraman writes that MIT researchers have developed a small self-folding robot that they hope will one day lead to bio-compatible robots that “could enter the body, perform surgery guided from afar, and dissolve away as harmlessly as surgical stitches.”

BetaBoston

An MIT team competing in the DARPA Robotics Challenge finished in sixth place during the final competition of the challenge, reports Hiawatha Bray for BetaBoston. “I thought it was amazing and inspiring, and it really gave the public a good picture of what the state of the art in robotics is,” says MIT postdoc Scott Kuindersma. 

Boston Globe

MIT researchers have developed a test that can accurately detect cancer in urine, reports Megan Scudellari for The Boston Globe. “Bacteria can grow in tumors as small as 1 millimeter, so the urine test has the potential to detect liver tumors — which tend to be small and dispersed — very early on, which would improve survival rates for patients,” Scudellari explains. 

Newsweek

MIT researchers have created a tiny, self-assembling, origami robot that they hope could one day be small enough to enter the human body and perform medical tasks, reports Lauren Walker for Newsweek.  “Driven by magnetic fields, the robot can travel on both land and water at the speed of three or four centimeters per second," Walker explains. 

CBC News

Lauren O’Neil of CBC News reports on a new self-folding origami robot created by researchers at MIT’s Computer Science and Artificial Intelligence Laboratory (CSAIL). The robot “could eventually become small enough to fold into the human body, perform medical tasks, and then dissolve itself when finished — all by itself,” O’Neil reports.