Примери за използване на Artificial muscles на Английски и техните преводи на Български
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Artificial muscles give‘superpower' to robots.
The robot is made of artificial muscles that when contracted,….
Artificial muscles set to create robots with super powers.
They could also help in developing artificial muscles for tissue replacement,” added Dr Tedesco.
Artificial muscles may not only be used in robots but also sensitive surgical devices and a host of other applications where gripping and manipulation is important.
Instead of propellers, our robot uses soft artificial muscles to move like an eel underwater without making any sound.
Origami-inspired graphene paper that can fold itself could be used to create anything from miniature robots to artificial muscles, according to a new study.
The robot is made of artificial muscles that when contracted,… titanoboa Science; General science.
Smart materials are basis of many applications, including sensors andalso actuators, or artificial muscles, particularly as electro active polymers.
Pneumatic artificial muscles, also known as air muscles, are special tubes that expand(typically up to 40%) when air is forced inside them.
The“hybrid heart” will be the first ever made of soft artificial muscles and sensors and then coated in human tissue grown in a lab.
In addition to having the potential to inspire self-folding devices,the researchers said graphene paper could eventually be used to create artificial muscles.
It is the first hybrid heart made from soft artificial muscles and sensors which are coated in human tissues that are grown in a laboratory.
According to the team, this breakthrough could find use in everything from minimally invasive surgical tools to the artificial muscles for more complex and traditional robots.
As these artificial muscles are elastic and soft, so they are much safer than motors that are used traditionally which are uncomfortable and stiff.
The“hybrid heart” will be the first ever made of soft artificial muscles and sensors and then coated in human tissue grown in a lab.
Because the artificial muscles are elastic and soft they are safer than traditional motors used in rigid robotic exoskeletons that, although powerful, are stiff and uncomfortable.
The mechanical movements of the body will perform of artificial muscles that will have functions, similar to natural muscles. .
The artificial muscles accurately model severe genetic muscle diseases, which will allow scientists to test different types of therapies on human cells that embody the characteristics of the patients.
The work follows another recent study published in Nature Communications showing that artificial muscles can be grown from human pluripotent stem cells.
The study found that 3D artificial muscles can be generated from both the healthy and diseased stem cells of patients with different types of muscular dystrophies.
Our work shows that we can make patient-specific mini-muscles in the lab and those artificial muscles show distinctive features of some forms of severe muscle diseases.
I'm working on this with the Field and Space Robotics Laboratory and my friend Steve Dubowsky at MlT, and we have come up with theidea of having little, jumping bean-like robots that are propelled by artificial muscle, which is one of the Dubowsky Lab's specialties-- are the EPAMs, or artificial muscles.
The study, published in Cell Reports,found that 3D artificial muscles can be generated from both healthy and diseased stem cells of patients with different types of severe muscle disorders.
So I helped them design the suit, I worked out the technical specs, I wrote a technical brochure,based on stuff I was reading- like artificial muscles and that sort of stuff.
The current study builds on that knowledge and shows that artificial muscles grown from pluripotent stem cells of patients with muscular dystrophy can model those severe disorders and can be made to contain up to four distinct cell types from the very same donor.
The research could help scientists develop self-folding structures and devices for modern applications,including wirelessly controlled micro robots, artificial muscles and devices for tissue engineering, said Jiuke Mu, a Ph.D.
DARPA's been developing it to create artificial muscle for wounded soldiers.
The artificial muscle can throw objects more than 50 times heavier than itself over a distance five times its own length in a period of just 60 milliseconds.