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STAT

STAT reporters Katie Palmer and Casey Ross spotlight how Prof. Regina Barzilay has developed an AI tool called Mirai that can identify early signs of breast cancer from mammograms. “Mirai’s predictions were rolled into a screening tool called Tempo, which resulted in earlier detection compared to a standard annual screening,” writes Palmer and Ross.

Good Morning America

Prof. Regina Barzilay speaks with Good Morning America about her work developing a new AI tool that could “revolutionize early breast cancer detection” by identifying patients at high risk of developing the disease. “If this technology is used in a uniform way,” says Barzilay, “we can identify early who are high-risk patients and intervene.”

The Washington Post

Washington Post reporter Steve Zeitchik spotlights Prof. Regina Barzilay and graduate student Adam Yala’s work developing a new AI system, called Mirai, that could transform how breast cancer is diagnosed, “an innovation that could seriously disrupt how we think about the disease.” Zeitchik writes: “Mirai could transform how mammograms are used, open up a whole new world of testing and prevention, allow patients to avoid aggressive treatments and even save the lives of countless people who get breast cancer.”

NIH

Writing for the NIH Director’s Blog, Dr. Francis Collins highlights how Prof. Tyler Jacks and research scientist Megan Burger’s work exploring T cell exhaustion led to the creation of a “strategy for developing cancer vaccines that can ‘awaken’ T cells and reinvigorate the body’s natural cancer-fighting abilities.” Collins writes that “the researchers hope to learn if this approach to cancer vaccines might work even better when used in combination with immunotherapy drugs, which unleash the immune system against cancer in other ways.”

WCVB

WCVB reporter Jessica Brown shares the story of Heather Walker, vice president of public relations for the Boston Celtics, who is currently enrolled in a MIT glioblastoma research study. The team of MIT researchers are examining “the tumor’s DNA, looking for gene mutations and abnormal proteins that make it unique,” says Brown. “With that information, the group designs a custom vaccine that trains the body’s immune system to recognize the cancerous cells and attack them.”

WCVB

WCVB reporter Maria Stephanos shares the experience of Heather Walker, vice president of public relations for the Boston Celtics, who is enrolled in an MIT glioblastoma research study. Walker’s family and friends have created the Heather Walker Fund for Glioblastoma Research at Dana Farber, where “all the money raised will go to supporting a glioblastoma research study at MIT [that is] using immunotherapy and personalized vaccines,” says Stephanos.

Nature

Nature reporter Eric Bender spotlights MIT startup Kytopen, which has developed a microfluidic platform to create induced pluripotent stem (iPS) cells and other forms of cell therapy. We want to do minimally invasive surgery,” says Kytopen co-founder Prof. Cullen Buie.

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.

Vox

Research scientist Andreas Mershin speaks with Noam Hassenfeld of Vox about his work developing a new AI system that could be used to detect disease using smell.

Scientific American

A new AI-powered system developed by researchers from MIT and other institutions can detect prostate cancer in urine samples as accurately as dogs can, reports Tanya Lewis and Prachi Patel for Scientific American. “We found we could repeat the training you use for dogs on the machines until we can’t tell the difference between the two,” says research scientist Andreas Mershin.

STAT

STAT reporter Alissa Ambrose spotlights the Koch Institute’s annual image awards, “which includes colorful images of micro needles, brain cells, and so-called mini livers.” Ambrose notes that the pictures are “stunning visualizations of life sciences and biomedical research being conducted to find treatments and cures for cancer.”

ITV

 ITV reporter Liz Summers spotlights how researchers from MIT and other institutions have developed a new system that could eventually be used to help detect diseases via smell. The researchers hope the results could “eventually result in the production of a ‘robotic nose’ perhaps in the form of a smartphone app.”

United Press International (UPI)

UPI reporter Brian P. Dunleavy writes that MIT researchers have developed a new system, modeled on a dog’s keen sense of smell, that could be used to help detect disease using smell. “We see the dogs and their training research as teaching our machine learning [sense of smell] and artificial intelligence algorithms how to operate,” says research scientist Andreas Mershin.

BBC News

A team of researchers from MIT and other institutions have created a new sensor that could be used to sniff out disease, reports Charlie Jones for the BBC. Research scientist Andreas Mershin says "Imagine a day when smartphones can send an alert for potentially being at risk for highly aggressive prostate cancer, years before a doctor notices a rise in PSA levels.”

Fast Company

Fast Company reporter Ruth Reader writes that researchers from MIT and other institutions have developed a new miniaturized detector that could be used to detect diseases by smell. “This paper was about integrating all the techniques that we know can work independently and finding out what of all this can go and become [part of] an integrated smartphone-based diagnostic,” says research scientist Andreas Mershin.