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TechCrunch

TechCrunch reporter John Biggs writes that MIT researchers have developed a system for 3-D printing glass that offers users more control over the material and final product. “The system is interesting because it actually produces clear glass structures that can be used for decoration or building,” Biggs notes.

Xinhuanet

MIT researchers have developed a remote-controlled ingestible capsule that can be operated by a user’s smartphone, reports the Xinhua news agency. “The researchers envisioned that this type of sensor could be used to diagnose early signs of disease and then respond with the appropriate medication,” Xinhua explains.

Inside Science

Inside Science reporter Yuen Yiu writes that MIT researchers have developed a new technique for producing nanoscale structures using a 3-D printing method that shrinks objects. Yiu explains that the new technique operates by “first creating a bigger structure inside of a gel, then shrinking the gel, which brings the structure down to one-thousandth the volume of the original.”

HealthDay News

HealthDay News reporter E.J. Mundell writes that MIT researchers have developed an ingestible capsule that can be used to monitor health a patient’s health. “The capsule could deliver drugs as well as sense the condition of its surroundings in the gut, including infections or allergic reactions,” Mundell explains.

TechCrunch

CSAIL researchers have developed a new technique to recreate paintings from a single photograph, reports John Biggs for TechCrunch. “The project uses machine learning to recreate the exact colors of each painting and then prints it using a high-end 3D printer that can output thousands of colors using half-toning,” Biggs explains.

Forbes

Forbes contributed Jennifer Kite-Powell writes about a system, called RePaint, developed by MIT researchers that uses AI and 3-D printing to replicate paintings. "We can picture RePaint being applied to restoration practice and education in museums so that greater numbers of people could be exposed to famous pieces of art beyond just the specific museums that house them," explains CSAIL mechanical engineer Mike Foshey.

Fast Company

Fast Company reporter Jesus Diaz writes that CSAIL researchers have developed a new technique to replicate works of art. Diaz explains that the system “uses a combination of 10 different transparent inks, placed by a 3D printer and governed by a complex AI system that decides how to layer and mix those inks to match a painting’s original colors.”

Quartz

This Quartz video highlights how MIT researchers are developing a self-driving boat system that can navigate waterways and can transform into different structures to move cargo, trash or build a temporary bridge. “The boats find the best path between preprogrammed locations, while using GPS, laser sensors, and cameras to avoid hitting anything,” explains Michael Tabb.

Forbes

Forbes reporter Amy Feldman highlights Desktop Metal, a company started by MIT graduate Ric Fulop and a number of MIT researchers, that has developed 3-D metal printers that are intended to “print fast enough and at a low enough cost to replace casting and CNC machining for numerous metal parts.”

Forbes

CSAIL researchers have developed a technique that makes it possible to create 3-D motion sculptures from 2-D video, reports Jennifer Kite-Powell for Forbes. The new technique could “open up the possibility to study social disorders, interpersonal interactions and team dynamics,” Kite-Powell explains.

BBC News

BBC Click reports on a system developed by CSAIL researchers that creates 3-D motion sculptures based off of 2-D video. The technique, say the researchers, “could help dancers and athletes learn more about how they move.”

Popular Mechanics

In an article for Popular Mechanics, Tiana Cline spotlights SoFi, an autonomous, soft, robotic fish that can swim alongside real fish. “SoFi has the potential to be a new type of tool for ocean exploration and to open up new avenues for uncovering the mysteries of marine life,” Cline notes.

NBC

NBC Mach reporter Tom Metcalfe writes that MIT researchers have developed a technique to 3-D print soft objects that change shape in response to magnetic fields. “You can imagine this technology being used in minimally invasive surgeries,” explains Prof. Xuanhe Zhao. “A self-steering catheter inside a blood vessel, for example — now you can use external magnetic fields to accurately steer the catheter.”

Fast Company

MIT’s Self-Assembly Lab collaborated with Swiss designer Christoph Guberan on a collection of 4D-printed “functional inflatable lamps, vases, and vessels,” which are now for sale at a New York gallery. “Rather than setting out to create a preconceived set of products, the resulting works were organically formed as an extension of the research process itself,” writes Aileen Kwun for Fast Company.

Make

Tasker Smith, a technical instructor in the Department of Mechanical Engineering, writes for Make Magazine about his work developing 3-D printed tools to create a custom leather press. “By marrying the versatility of digital design and fabrication with luxurious materials like leather,” writes Smith, “we can supercharge our process and generate customized artifacts worthy of handing down from generation to generation.”