Be first to read the latest tech news, Industry Leader's Insights, and CIO interviews of medium and large enterprises exclusively from Medical Tech Outlook
THANK YOU FOR SUBSCRIBING
By
MedTech Outlook | Thursday, January 23, 2020
Since so many years, we are witnessing advancement being made in developing skin-like sensors. Recently, researchers have come up with very interesting technology.
Stay ahead of the industry with exclusive feature stories on the top companies, expert insights and the latest news delivered straight to your inbox. Subscribe today.
FREMONT, CA: Recently, a super-stretchy, self-powering, and transparent sensor has been developed by the researchers of the University of Toronto Engineering that has the capability of recording the intricate sensations of human skin.
Researchers believe that the properties of AISkin, the short form of dubbed artificial ionic skin, can lead to advancements in wearable electronics, robotics, and personal healthcare in the future.
The technology is a hydrogel which makes it inexpensive and biocompatible and can be applied on the skin without any harmful effects. Besides, being adhesive, it doesn’t fall off.
The adherent AISkin includes two opposite charged sheets of stretchable substances called hydrogels. The researchers create a ‘sensing junction’ on the surface of the gel by overlaying positive and negative ions.
On being exposed to humidity, strain, or changes in temperature, the AISkin generates controlled ion movements throughout the sensing junction, which is then measured as electric signals like current or voltage.
AISkin is also exceptionally tough and stretchable. The human has the ability to stretch about 50 percent, which is less than AISkin, which can stretch up to 400 percent of its length without any breakage.
The unique technology can also lead to skin-like Fitbits that can measure various body parameters or an adherent touch that can be stick on the hand’s surface. AISkin can prove to be useful for athletes who constantly look for measuring the rigor of their training. Also, it can act as a wearable touchpad for playing games.
Moreover, it is also possible to measure the progress of muscle rehabilitation through AISkin. For example, the health care staff can monitor the patient’s finger-bending movements if the skin is put on the patient’s glove rehabilitating their hand.
Another field where this skin can be applied is in soft robotics, i.e., flexible bots made entirely out of polymers. For example, in factories, soft robotic grippers are utilized to handle delicate objects like food or light bulbs. The scientists envision AISkin being incorporated onto soft robots for measuring data, whether it is the food temperature or the pressure required to handle brittle items.
See Also: Top Healthcare Solution Companies
More in News
I agree We use cookies on this website to enhance your user experience. By clicking any link on this page you are giving your consent for us to set cookies. More info
