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image: Opinion: How to Define Cell Type

Opinion: How to Define Cell Type

By , , and | November 1, 2017

Advances in single-cell technologies have revealed vast differences between cells once thought to be in the same category, calling into question how we define cell type in the first place.

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image: Implanted Magnetic Probes Measure Brain Activity

Implanted Magnetic Probes Measure Brain Activity

By | November 1, 2017

Micrometer-size magnetrodes detect activity-generated magnetic fields within living brains.

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image: Infographic: Breaking into the Brain

Infographic: Breaking into the Brain

By | November 1, 2017

The blood-brain barrier is a collection of specialized cells and proteins that control the movement of molecules from the blood to the central nervous system.

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image: Infographic: Reading the Mind’s Magnetism

Infographic: Reading the Mind’s Magnetism

By | November 1, 2017

Newly designed sensors detect the magnetic fields generated by electrical activity within cat brains.

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image: The Wada Test, 1948

The Wada Test, 1948

By | November 1, 2017

A decades-old neurological procedure developed under unique and difficult conditions in postwar Japan remains critical to the treatment of epilepsy.

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image: Getting Drugs Past the Blood-Brain Barrier

Getting Drugs Past the Blood-Brain Barrier

By | November 1, 2017

To treat neurological disease, researchers develop techniques to bypass or trick the guardian of the central nervous system.

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image: Image of the Day: Painting with Viruses

Image of the Day: Painting with Viruses

By | October 31, 2017

Researchers have used a modified rabies virus and fluorescent proteins to tag individual nerve cells in the mouse visual cortex. 

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Research in human patients and mice reveals the role of the circadian clock in the risk of heart damage at different times of day.

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image: Image of the Day: Fear Center

Image of the Day: Fear Center

By | October 26, 2017

A set of neurons in the brain’s central amygdala plays a key role in forming memories of aversive experiences, scientists find in mice.  

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With the arrival of a new class of single-nucleotide editors, researchers can target the most common type of pathogenic SNP in humans.

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