Here we present a new class of variable stiffness actuators for soft robotics based on biohybrid materials that change their state from soft-to-hard by creating their own bones. The biohybrid variable stiffness soft actuators were fabricated by combining the electromechanically active polymer polypyrrole (PPy) with a soft substrate of polydimethylsiloxane or alginate gel. These actuators were functionalized with cell-derived plasma membrane nanofragments (PMNFs), which promote rapid mineralization within 2 days. These actuators were used in robotic devices, and PMNF mineralization resulted in the robotic devices to achieve a soft to stiff state change and thereby a decreased or stopped actuation. Moreover, perpendicularly and diagonally pat...
In nature, animals or plants often use soft organs to move and hunt. Research works on bioinspired m...
Inspired by biological systems, soft robotics has become a new research field that builds compliance...
In the last few decades, the highly multisciplinary field of microrobotics has seen important develo...
Here we present a new class of variable stiffness actuators for soft robotics based on biohybrid mat...
Inspired by the dynamic process of initial bone development, in which a soft tissue turns into a sol...
This paper reviews the current status of soft robots in biomedical field. Soft robots are made of ma...
A new design for the skeleton of biohybrid robots, millimeter scale soft robots powered by engineere...
Nature has inspired a new generation of robots that not only imitate the behavior of natural systems...
Soft robots are a new field in robotics that shows an increasing potential to dramatically expand th...
We present a methodology for building biologically inspired, soft microelectromechanical systems (ME...
Robots from material-based actuators offer high potential for small-scale robots with abilities hard...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
The field of soft robotics aims to address the challenges faced by traditional rigid robots in less ...
Pneumatic soft actuators possess relatively fast response, inherent high flexibility, and achieve ex...
In nature, animals or plants often use soft organs to move and hunt. Research works on bioinspired m...
Inspired by biological systems, soft robotics has become a new research field that builds compliance...
In the last few decades, the highly multisciplinary field of microrobotics has seen important develo...
Here we present a new class of variable stiffness actuators for soft robotics based on biohybrid mat...
Inspired by the dynamic process of initial bone development, in which a soft tissue turns into a sol...
This paper reviews the current status of soft robots in biomedical field. Soft robots are made of ma...
A new design for the skeleton of biohybrid robots, millimeter scale soft robots powered by engineere...
Nature has inspired a new generation of robots that not only imitate the behavior of natural systems...
Soft robots are a new field in robotics that shows an increasing potential to dramatically expand th...
We present a methodology for building biologically inspired, soft microelectromechanical systems (ME...
Robots from material-based actuators offer high potential for small-scale robots with abilities hard...
To create life-like movements, living muscle actuator technologies have borrowed inspiration from bi...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
The field of soft robotics aims to address the challenges faced by traditional rigid robots in less ...
Pneumatic soft actuators possess relatively fast response, inherent high flexibility, and achieve ex...
In nature, animals or plants often use soft organs to move and hunt. Research works on bioinspired m...
Inspired by biological systems, soft robotics has become a new research field that builds compliance...
In the last few decades, the highly multisciplinary field of microrobotics has seen important develo...