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How decisions unfold in a zebrafish brain

Tracking neuronal activity in a zebrafish brain, researchers can predict when the fish will flip its tail and to which direction, left or right.

How to starve a tumor 

Scientists are learning how tumor cells’ nutritional needs differ from those of normal cells. Will their work help launch the next genre of cancer therapies?

Scientists examine how a gut infection may produce chronic symptoms

For some unlucky people, a bout of intestinal distress like traveler’s diarrhea leads to irritable bowel syndrome. Recent discoveries have given scientists a better idea of how this happens, and potential leads for new treatments.

Neuroscientist Bruce McEwen, who studied the impact of stress on the brain, has died

A pioneer in neuroendocrinology, McEwen’s work on how the brain changes throughout life has profound implications for public health. He died on January 2, at age 81.

Insects on a diet, zombie neurons, and other memorable science stories of 2019

Rockefeller researchers accomplished a lot this year. We look back at 12 of the most exciting science stories of 2019.

A surprising new source of attention in the brain

Scientists find a new brain area in control of our attention skills, raising new questions in what has long been considered a settled scientific field.

New clues about why a universal flu vaccine is so elusive

To scientists' surprise, the immune system develops its response to each virus variant mostly from scratch, instead of building on what it has already learned.

Researchers discover a new mechanism in childhood kidney cancer

A problem in reader proteins that identify which gene is up for expression may cause normal cells to turn malignant during development.

Collaborative Research Center installation bridges past and present scientists

A new digital display, the Scientist Explorer, is a portal into the cumulative accomplishments of researchers with labs in Flexner and Smith Halls.

Scientists develop new method that predicts vulnerability to stress

Researchers have identified a set of biological factors in mice that seem to determine one's ability to bounce back from a traumatic event, and provide preliminary evidence that a naturally-occurring substance may help boost resiliency in the face of stressful situations.