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PerkinElmer
PerkinElmer

The Scientist

» brain and neuroscience

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image: Eye on the Fly

Eye on the Fly

By | January 1, 2015

Automating Drosophila behavior screens gives researchers a break from tedious observation, and enables higher-throughput, more-quantitative experiments than ever before.

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image: Micro Masterpiece

Micro Masterpiece

By | January 1, 2015

The artful science of Tom Deerinck, a micrographer who consistently places in Nikon’s Small World competition

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image: Rat Race

Rat Race

By | January 1, 2015

Neuroscientist Anthony Zador explains why he uses rats to understand auditory attention in the brain.

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image: Tangle Trigger

Tangle Trigger

By | January 1, 2015

An enzyme that cleaves tau protein in acidic cellular conditions may trigger early events in Alzheimer’s disease.

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image: Molecular Hub of Autism?

Molecular Hub of Autism?

By | December 30, 2014

Researchers identify a network that includes many genes previously linked to autism spectrum disorders.

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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: 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: 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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image: Bat Navigation Revealed

Bat Navigation Revealed

By | December 4, 2014

As the flying mammals navigate complex environments, they make use of specialized brain cells that cooperate to build a coordinate system that works in three dimensions.

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