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A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: “Redhead” Gene Variant Boosts Melanoma Risk

“Redhead” Gene Variant Boosts Melanoma Risk

By | July 12, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

1 Comment

image: Hot Off the Presses

Hot Off the Presses

By | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: Peter Tyack: Marine Mammal Communications

Peter Tyack: Marine Mammal Communications

By | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: Submerged Pigs Inform Forensics

Submerged Pigs Inform Forensics

By | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: Well-Brined Pork

Well-Brined Pork

By | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: Immune Cell–Stem Cell Cooperation

Immune Cell–Stem Cell Cooperation

By , and | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

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image: Immune Cells' Role in Tissue Maintenance and Repair

Immune Cells' Role in Tissue Maintenance and Repair

By , and | July 1, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

0 Comments

image: Exercise-Induced Muscle Factor Promotes Memory

Exercise-Induced Muscle Factor Promotes Memory

By | June 23, 2016

A 3-D carbon nanotube mesh enables rat spinal tissue sections to reconnect in culture.

3 Comments

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