Engineering researchers at the University of Minnesota have developed a
revolutionary process for 3D printing stretchable electronic sensory
devices that could give robots the ability to feel their environment.
The discovery is also a major step forward in printing electronics on
real human skin.
"This stretchable electronic fabric we developed has many practical
uses," said Michael McAlpine, a University of Minnesota mechanical
engineering associate professor and lead researcher on the study.
"Putting this type of 'bionic skin' on surgical robots would give
surgeons the ability to actually feel during minimally invasive
surgeries, which would make surgery easier instead of just using cameras
like they do now. These sensors could also make it easier for other
robots to walk and interact with their environment."
McAlpine, who gained international acclaim in 2013 for integrating
electronics and novel 3D-printed nanomaterials to create a "bionic ear,"
says this new discovery could also be used to print electronics on real
human skin. This ultimate wearable technology could eventually be used
for health monitoring or by soldiers in the field to detect dangerous
chemicals or explosives.
