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image: Nailing Down HAR Function

Nailing Down HAR Function

By | August 1, 2016

A remaining challenge in the study of human accelerated regions (HARs) is establishing their specific functions during development and other biological processes.

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image: The Death of Diets

The Death of Diets

By | August 1, 2016

Book author and neuroscientist Sandra Aamodt discusses her own struggle with her weight and the science behind breaking the cycle of gain and loss.

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image: The Hormones and Brain Regions Behind Eye Contact

The Hormones and Brain Regions Behind Eye Contact

By | August 1, 2016

Can oxytocin help increase eye contact in patients with autism, thus opening up a whole new world of social interaction?

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image: Understanding Human Accelerated Regions

Understanding Human Accelerated Regions

By | August 1, 2016

Fast-evolving regions of the human genome differentiate our species from all other mammals.

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image: Decoding Human Accelerated Regions

Decoding Human Accelerated Regions

By | August 1, 2016

Do the portions of our genomes that set us apart from other animals hold the secret to human evolution?

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image: The Genes Underlying Autism Are Coming Into Focus

The Genes Underlying Autism Are Coming Into Focus

By | August 1, 2016

As researchers sequence the DNA of thousands of kids with autism, dozens of genetic subgroups are emerging.

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image: Contributors

Contributors

By | August 1, 2016

Meet some of the people featured in the August 2016 issue of The Scientist.

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image: Minding the Pulse of Memory Consolidation

Minding the Pulse of Memory Consolidation

By | July 28, 2016

Studying sleep spindles could help neuroscientists better understand certain cognitive impairments.  

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image: Additional #IceBucketChallenge Payoffs

Additional #IceBucketChallenge Payoffs

By | July 28, 2016

Researchers identify a new ALS-associated gene thanks to funds generated by the social media challenge that went viral in summer 2014.

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image: Different Brains, Similar Wiring

Different Brains, Similar Wiring

By | July 22, 2016

The brains of primates and mice follow the same exponential rule of connectivity, according to a study.

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