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image: Image of the Day: Red Alert

Image of the Day: Red Alert

By | November 9, 2017

Researchers unveil the neural basis of alertness in larval zebrafish.   

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Single-cell analyses from mouse samples detail the changes in cell distribution during infections.

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Maintaining dynamic connections among the body’s mitochondria is required for the health and life-extending benefits of low-calorie diets for nematodes.

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image: Image of the Day: Fragile X

Image of the Day: Fragile X

By | November 7, 2017

Researchers uncover the central role of a protein linked to Fragile X Syndrome in mice, one of the leading causes of autism and intellectual disability.

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image: Mass Resignation from <em>Scientific Reports</em>’s Editorial Board

Mass Resignation from Scientific Reports’s Editorial Board

By | November 7, 2017

Nineteen researchers have stepped down after the journal decided not to retract a paper that they say plagiarized the work of a Johns Hopkins biomedical scientist.

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image: Equivocal Findings of Alzheimer’s Trial Using Young Blood

Equivocal Findings of Alzheimer’s Trial Using Young Blood

By | November 6, 2017

A team of Stanford University researchers say that administering young people’s blood plasma to Alzheimer’s patients could improve cognitive function, but the results have been criticized.

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image: Image of the Day: Neurons Unveiled

Image of the Day: Neurons Unveiled

By | November 2, 2017

Researchers have succeeded in mapping the complex paths of 300 neurons in the mouse brain.

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In people with epilepsy, transcranial alternating current stimulation (tACS) does not affect memory-related brainwaves as widely claimed, researchers report.

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image: Corals’ pH Sensor Identified

Corals’ pH Sensor Identified

By | November 1, 2017

Soluble adenylyl cyclase measures and responds to pH changes in coral cells, but whether it can help the animals withstand ocean acidification is not yet known.

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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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