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image: 2016 Top 10 Innovations: Honorable Mentions

2016 Top 10 Innovations: Honorable Mentions

By | December 1, 2016

These runners up to the Top 10 Innovations of 2016 caught our judges' attention.

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image: Infographic: How to Build a Synthetic Sensor

Infographic: How to Build a Synthetic Sensor

By | December 1, 2016

Scientists designed a genetic sensor-and-readout system, based on detecting a transcription factor, that performs a custom cellular activity.

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image: Nuclear Pores Come into Sharper Focus

Nuclear Pores Come into Sharper Focus

By and | December 1, 2016

Solving a long-standing structural puzzle will open the door to understanding one of the cell’s most enigmatic machines.

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image: Top 10 Innovations 2016

Top 10 Innovations 2016

By | December 1, 2016

This year’s list of winners celebrates both large leaps and small (but important) steps in life science technology.

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A noninvasive microscopy technique that exploits NADH fluorescence enables researchers to observe how mitochondria alter their shape and arrangement in human tissue.

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image: Next Generation: Super-Fast Tracking of Single Molecules

Next Generation: Super-Fast Tracking of Single Molecules

By | November 23, 2016

A clever twist on a super-resolution microscopy technique improves the temporal resolution of single-molecule tracking. 

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image: Scientists Fingerprint the Brain

Scientists Fingerprint the Brain

By | November 17, 2016

The brain’s structural connections are unique to an individual, a new imaging technique reveals.

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image: Influential Organic Chemist Dies

Influential Organic Chemist Dies

By | November 7, 2016

John Roberts, the MIT and Caltech researcher who pioneered nuclear magnetic resonance spectroscopy as a tool to elucidate molecular structure, has passed away.

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image: Electron Micrographs Get a Dash of Color

Electron Micrographs Get a Dash of Color

By | November 3, 2016

A new technique creates colorful stains that label proteins and cellular structures at higher resolution than ever before possible. 

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Results from experiments in mice revise a long-held hypothesis that certain protein scaffolds are needed for synaptic activity.

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