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image: Book Excerpt from <em>The New Science of Consciousness</em>

Book Excerpt from The New Science of Consciousness

By Paul L. Nunez | November 1, 2016

In Chapter 1, author Paul L. Nunez sets the stage for a scientific exploration of the inky depths of consciousness.

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image: Can Science Crack Consciousness?

Can Science Crack Consciousness?

By Paul L. Nunez | November 1, 2016

Researchers seek to disentangle the complexity of the human mind from a cross-disciplinary perspective, but the phenomenon may be out of the reach of human understanding.

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image: Contributors

Contributors

By Ben Andrew Henry | November 1, 2016

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

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image: From Body to Brain

From Body to Brain

By The Scientist Staff | November 1, 2016

Researcher Michal Schwartz discusses the promise of neuroimmunology to treat neurological disease.

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image: Jason Castro Tackles Olfactory Mysteries

Jason Castro Tackles Olfactory Mysteries

By Ben Andrew Henry | November 1, 2016

Assistant Professor, Bates College. Age: 37

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image: Neural Connectome Method Uses mRNA Barcodes

Neural Connectome Method Uses mRNA Barcodes

By Ruth Williams | November 1, 2016

Researchers swap microscopy for RNA sequencing to track neural paths in the mouse brain.  

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image: Neural Network Found That Helps Control Breathing

Neural Network Found That Helps Control Breathing

By Catherine Offord | November 1, 2016

The results suggest that breathing is orchestrated by three—rather than two—excitatory circuits in the medulla.

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image: Neurometabolic Disorders Could Contribute to Depression

Neurometabolic Disorders Could Contribute to Depression

By Ben Andrew Henry | November 1, 2016

Impairments in the production of neurotransmitters may lead to depression in some patients, preliminary results show, opening new avenues for research.

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Male mice exposed to females, their urine, or a chemical in their urine lost sensory neurons in their vomeronasal organs that respond to that chemical.

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Results from experiments in mice revise a long-held hypothesis that certain protein scaffolds are needed for synaptic activity.

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