Summary: Humans and animals can achieve agile and efficient movements because the muscle can operate in different modes depending on its intrinsic mechanical properties. For bioinspired robotics and prosthetics, it is highly desirable to have artificial actuators with muscle-like properties. However, it still remains a challenge to realize both intrinsic muscle-like force-velocity and force-length properties in one single actuator simultaneously. This study presents a bioinspired soft actuator, named HimiSK (highly imitating skeletal muscle), designed by spatially arranging a set of synergistically contractile units in a flexible matrix similar to skeletal musculature. We have demonstrated that the actuator presents both intrinsic force-vel...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
The integration of biological systems into robotic devices might provide them with capabilities acqu...
The Problem: A long standing goal in engineering is to exploit the unique designs of biological syst...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Many years have been spent to study different kinds of actuators and still researches are in progres...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Biorobotic research seeks to develop new robotic technologies mod-eled after the performance of huma...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
The integration of biological systems into robotic devices might provide them with capabilities acqu...
The Problem: A long standing goal in engineering is to exploit the unique designs of biological syst...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Humans and animals can achieve agile and efficient movements because the muscle can operate in diffe...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Many years have been spent to study different kinds of actuators and still researches are in progres...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Actuation is an essential function of any artificial or living machine, allowing its movement and i...
Biorobotic research seeks to develop new robotic technologies mod-eled after the performance of huma...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
Inspired by Nature, one of the most ambitious challenge in soft robotics is to design actuators capa...
The integration of biological systems into robotic devices might provide them with capabilities acqu...
The Problem: A long standing goal in engineering is to exploit the unique designs of biological syst...