Magnetically-actuated soft robots for medical applications are required to be functional, biocompatible, as well as capable of robust motion inside human organs. In this paper, a ring-shaped magnetic soft robot, with a flexible biopolymeric film coating, capable of motion on mucus-coated surfaces is designed and investigated. The biopolymeric film made from chitosan–glycerol (C–G) solution endows the robot with robust locomotion capabilities on surfaces of diverse geometrical shapes and orientations. By utilizing mucoadhesive locomotion, the robot has the potential to carry out clinical procedures on enclosed mucus-coated tissue surfaces. Material characterization shows that the mucoadhesion increases with the increase of contact times and/...
Robots from material-based actuators offer high potential for small-scale robots with abilities hard...
Reducing invasive procedures while delivering effective treatment is one of the grand challenges in ...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Magnetically-actuated soft robots for medical applications are required to be functional, biocompati...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Soft robots are a sub-field of robotics that uses highly compliant materials to create robots that s...
Recently, the realization of minimally invasive medical interventions on targeted tissues using wire...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Robots from material-based actuators offer high potential for small-scale robots with abilities hard...
Reducing invasive procedures while delivering effective treatment is one of the grand challenges in ...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Magnetically-actuated soft robots for medical applications are required to be functional, biocompati...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Magnetically-actuated soft robots have potential for medical application but require further innovat...
Soft robots are a sub-field of robotics that uses highly compliant materials to create robots that s...
Recently, the realization of minimally invasive medical interventions on targeted tissues using wire...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Nature-inspired actuators that can be driven by various stimuli are an emerging application in mobil...
Soft robotics is an emerging discipline that employs soft flexible materials such as fluids, gels an...
Robots from material-based actuators offer high potential for small-scale robots with abilities hard...
Reducing invasive procedures while delivering effective treatment is one of the grand challenges in ...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...