Sunday, October 15, 2017

Inspired by Octopus 'Camouflage Skin'

Scientists have discovered an unsurpassed method of developing synthetic 'camouflage skin', inspired by octopus and cuttlefish.


New York: Scientists have discovered an unsurpassed method of developing synthetic 'camouflage skin', inspired by octopus and cuttlefish. Both octopus and cuttlefish are those creatures that immediately change the color of their skin and the way to lose them in the environment is a sample of their camouflage skills. These organisms quickly and reversibly give their skin the shape of a texture, and can be transformed into the 3D surface, which gives a large size outline of these organisms, such as seaweed, coral , Which detect and use the camouflage.

In a research report published in the magazine 'Science', researchers have given information on developing artificial tissue groups and have stated that both the tissue groups and 2D expanded material aim to increase and withdraw a range of 3D shapes. The University of Pennsylvania's assistant professor and principal study author James Picual said, "Engineers have developed a number of methods to control the size of soft, expandable materials, but we wanted to do it in a simple way, , Strong and easy to control.

He said that we were looking at how cephalopods were so successful in changing the skin texture, that's why we got ready and inspired by the muscles, which allow cephalopods to control their texture, and these thoughts we soften Used in a method to control the size of the stretch material.

Roger Hennlone of the Marine Biological Laboratory of Massachusetts, USA, said, "This is a very good example of many potential applications with bio-induced engineering." Hernon said that it could work in any situation, even where You want to manipulate the temperature of an object.
Special things
Cafelogodes allow you to control your texture
Information is given in a research report published in the magazine 'Science'
This organism gives a skin shape to its skin rapidly and reversibly

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