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image: Contaminants Could’ve Accounted for STAP

Contaminants Could’ve Accounted for STAP

By | December 29, 2014

Embryonic stem cells likely mucked up the cultures used in the debunked “stimulus-triggered acquisition of pluripotency” studies.

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image: Science Setbacks: 2014

Science Setbacks: 2014

By | December 25, 2014

This year in life science was marked by paltry federal funding increases, revelations of sequence contamination, and onerous regulations.

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image: 2014’s Most “Liked” Images of the Day

2014’s Most “Liked” Images of the Day

By | December 24, 2014

The best of The Scientist’s popular daily image posts

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image: STAP Author Can’t Replicate Results

STAP Author Can’t Replicate Results

By | December 22, 2014

RIKEN’s Haruko Obokata fails to replicate stimulus-triggered acquisition of pluripotency.

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image: Bats Make a Comeback

Bats Make a Comeback

By | December 22, 2014

Citizen-scientist data obtained through the U.K.’s National Bat Monitoring Programme show that populations of 10 bat species have stabilized or are growing.

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image: Brain-Machine Interface Goes Wireless

Brain-Machine Interface Goes Wireless

By | December 18, 2014

A paralyzed woman has used mind power and a robotic arm wirelessly connected to her brain to achieve the most dexterous movement yet accomplished with BMI.

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image: Reprogramming Redux

Reprogramming Redux

By | December 18, 2014

Can mechanical forces alone be manipulated to create stem-like cells?

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image: New Stem Cell State

New Stem Cell State

By | December 10, 2014

Through cellular reprogramming, researchers have produced a novel pluripotent mouse stem cell in vitro.

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image: Big Data and the Brain

Big Data and the Brain

By | December 8, 2014

Advances in imaging have inundated neuroscientists with massive amounts of information on synaptic connections, among other things. The challenge now is to understand it all.

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image: Shoring Up Golgi To Slow Alzheimer’s

Shoring Up Golgi To Slow Alzheimer’s

By | December 8, 2014

Blocking activity of a kinase in a mouse model protects Golgi in cells and reduces the build-up of amyloid β, a primary component of Alzheimer’s disease.

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