Skip to content ↓

Topic

Health sciences and technology

Download RSS feed: News Articles / In the Media / Audio

Displaying 211 - 225 of 314 news clips related to this topic.
Show:

WBUR

Prof. Lee Gehrke speaks with WBUR’s Carey Goldberg about a new paper-based diagnostic that can detect the Zika virus. “Our technology for screening large numbers of antibodies against a panel of closely related viral proteins has allowed us to specifically identify antibodies that recognize only one of the viral antigens, and that gives us a great deal of specificity.”

Reuters

MIT researchers have developed a new test that can identify dengue and the Zika virus quickly and cheaply, reports Sophie Hares for Reuters. “Knowing whether these tests are positive or negative is very important for designing the course of clinical care,” explains Prof. Lee Gehrke. “It simplifies the decision tree and, we believe, leads to improved patient care.”

The Huffington Post

Two new papers from CSAIL researchers “aim to help doctors make better use of the digital information they’re presented with,” writes Adi Gaskell for The Huffington Post. One examines a tool that uses ICU data to choose the best treatment option based on a range of symptoms, while the other facilitates “predictive models based upon an electronic health record system.”
 

Inverse

Inverse reporter Dan Robitzski writes that MIT researchers have created a new gel-like coating that can be used to make medical devices feel more natural. The researchers, “developed the hydrogels to manufacture products that feel like the part of the body they contact — say, a catheter that feels like the inside of a urethra.”

Boston Magazine

MIT researchers have developed a new way to grow liver tissue, writes Jamie Ducharme for Boston Magazine. “These minuscule structures expanded to 50 times their starting size,” Ducharme explains, “and performed normal liver functions like metabolism regulation, bile production, and detoxification.”

Boston Herald

MIT researchers have engineered an expandable liver from human liver cells that can grow up to 50 times its original size, reports Lindsay Kalter for the Boston Herald. In the future, the researchers would like to make the expandable livers smarter, “by embedding sensors in them to tell us how they are doing,” explains Prof. Sangeeta Bhatia.

Boston Magazine

Boston Magazine reporter Jamie Ducharme writes that MIT researchers have developed a new gel-like coating that can be used on medical devices like catheters and IV tubes to reduce friction and ease patient discomfort. The substance, “can be moved, stretched, and twisted without breaking, “Ducharme explains, and also, “acts as a lubricant for the objects it coats.”

U.S. News & World Report

MIT researchers have developed a new way to engineer liver tissue that involves implanting tiny “seeds” of liver tissue, which expand to perform normal liver functions, reports Robert Preidt for U.S. News & World Report. The technique could one day “help reduce long wait lists for liver transplants.”

Bloomberg TV

In this Bloomberg TV video aired during the July 4th Spectacular, Profs. Sangeeta Bhatia and Robert Langer discuss the Greater Boston area’s prowess in medical research. Langer explains that for his research, which is focused on inventing, “new things in chemical engineering that can change people’s lives in medicine, there is no better place.”   

Boston Globe

A study by MIT researchers finds that children from lower-income families benefited more from summer reading programs, reports Andrew Grant for The Boston Globe. Of the children who participated in the study about half, “improved their test scores and most of those that did came from lower-income families.”

PRI’s The World

Graduate student Shriya Srinivasan speaks with Ira Flatow of PRI’s Science Friday about the surgical technique she and her colleagues developed to make prosthetic limbs feel more natural. Srinivasan explains that the technique allows patients to have, “finer prosthetic control — and be able to modulate position, velocity, and stiffness of prosthetic devices, which is a significant improvement to the clinical standard.”

Scientific American

MIT researchers have developed a surgical technique that could make prosthetic limbs feel more natural, writes Karen Weintraub for Scientific American. “With this approach, we’re very confident that the human will actually feel position, will actually feel speed, will actually feel force,” says Prof. Hugh Herr. “It’ll completely feel like their own limb.”

Science

Researchers at MIT have developed a surgical technique that could lead to more lifelike prosthetic limbs, reports Matthew Hutson for Science. The new technique, coupled with a smart prosthetic, should enable users to “feel the same way that they once felt when they had a limb,” says Prof. Hugh Herr. 

The Wall Street Journal

Wall Street Journal reporter James Hagerty writes about the life and legacy of Henri Termeer, a life member of the MIT Corporation known for his work as a pioneering leader in the field of biotechnology.

WBUR

Reporting for WBUR, Karen Weintraub speaks with Profs. Angela Belcher, Sangeeta Bhatia and Paula Hammond about their work developing tiny tools to target cancer cells. Bhatia explains that their collaboration feels like, “a dream team of people that are interested in nanoscience and nanotechnology and focusing those advances on cancer.”