Anonymous ID: 977319 Jan. 28, 2020, 11:05 a.m. No.7942543   🗄️.is 🔗kun   >>2549 >>2552 >>2562 >>2564 >>3190

>>7942441 lb

>>7942511

 

Charles Lieber

Cyborg tissue

 

https://www.newscientist.com/article/dn22217-cyborg-tissue-is-half-living-cells-half-electronics/

 

Cyborg tissue is half living cells, half electronics

Technology 28 August 2012

 

By Will Ferguson

New Scientist Default Image

Bio-scaffolds go electric

 

(Image: Charles M. Lieber and Daniel S. Kohane)

 

They beat like real heart cells, but the rat cardiomyocytes in a dish at Harvard University are different in one crucial way. Snaking through them are wires and transistors that spy on each cell’s electrical impulses. In future, the wires might control their behaviour too.

 

Versions of this souped-up, “cyborg” tissue have been created for neurons, muscle and blood vessels. They could be used to test drugs or as the basis for more biological versions of existing implants such as pacemakers. If signals can also be sent to the cells, cyborg tissue could be used in prosthetics or to create tiny robots.

 

“It allows one to effectively blur the boundary between electronic, inorganic systems and organic, biological ones,” says Charles Lieber, who leads the team behind the cyborg tissue.

 

Artificial tissue can already be grown on three-dimensional scaffolds made of biological materials that are not electrically active. And electrical components have been added to cultured tissue before, but not integrated into its structure, so they were only able to glean information from the surface.