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In vivo imaging reveals how grafted embryonic brain cells grow, connect, and mature into contributing members of damaged visual pathways in adult mice.


As people continue to tell tall tales, fMRI data show certain brain regions become less busy.

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image: Zika Update

Zika Update

By | October 24, 2016

Virus’s effect on RNA methylation; identifying brain cells targeted by Zika; virus found in vaginal secretions for two weeks after infection; updated CDC recommendations for Miami


image: Week in Review: October 17–21

Week in Review: October 17–21

By | October 21, 2016

Report finds that pathologist involved in anonymous defamation case committed multiple acts of misconduct; growing eggs from stem cells; neutrophils’ role in metastasis; convergent evolution in birds


ACLU lawyers representing the post-publication peer review site have filed a motion to admit the existence of a university investigation that found pathologist Fazlul Sarkar guilty of misconduct.


image: Misconduct Finding Could Impact PubPeer Litigation

Misconduct Finding Could Impact PubPeer Litigation

By | October 19, 2016

Wayne State University’s conclusion that pathologist Fazlul Sarkar committed research misconduct could affect the ongoing legal proceedings related to anonymous critics of his work.


A Wayne State University probe into allegations of research misconduct leveled against pathologist Fazlul Sarkar has found the scientist guilty of multiple instances of image manipulation, among other infractions.

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image: Bridging a Gap in the Brain

Bridging a Gap in the Brain

By | October 12, 2016

Neuroscientists identify how the left and right hemispheres of the mammalian brain connect during development.


image: Deep-Sea Viruses Destroy Archaea

Deep-Sea Viruses Destroy Archaea

By | October 12, 2016

Viruses are responsible for the majority of archaea deaths on the deep ocean floors, scientists show.


image: Nascent Neurons Journey Through Newborn Brain

Nascent Neurons Journey Through Newborn Brain

By | October 6, 2016

Young cells make their way to the frontal lobe to create new circuits in the brains of infants, researchers report. 


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