Humans possess manual dexterity, motor skills, and other physical abilities that rely on feedback provided by the somatosensory system. Herein, a method is reported for creating soft somatosensitive actuators (SSAs) via embedded 3D printing, which are innervated with multiple conductive features that simultaneously enable haptic, proprioceptive, and thermoceptive sensing. This novel manufacturing approach enables the seamless integration of multiple ionically conductive and fluidic features within elastomeric matrices to produce SSAs with the desired bioinspired sensing and actuation capabilities. Each printed sensor is composed of an ionically conductive gel that exhibits both long-term stability and hysteresis-free performance. As an exem...
In the biomedical field, robotics is used to emulate the movement and dexterity of human hands for m...
Haptic actuators generate touch sensations and provide realism and depth in human-machine interactio...
Continued technological progress in robotic systems has led to more applications where robots and hu...
Humans possess manual dexterity, motor skills, and other physical abilities that rely on feedback pr...
Soft robotic grippers enable gentle, adaptive, and bioinspired manipulation that is simply not possi...
One of the most valuable contributions robotics can offer is support to daily human activities, yet ...
Developing soft actuators and sensors by means of 3D printing has become an exciting research area. ...
118 pagesSoft robotic systems are inherently safe for human interaction and are able to perform usef...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
Haptics plays a significant role not only in the rehabilitation of neurological disorders, such as s...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
In this study, a 3D printed soft robotic hand with embedded soft sensors is designed and developed t...
Herein, the development of complex 3D intelligent structures such as robotic hands using innovative ...
Herein, the development of complex 3D intelligent structures such as robotic hands using innovative ...
In the biomedical field, robotics is used to emulate the movement and dexterity of human hands for m...
In the biomedical field, robotics is used to emulate the movement and dexterity of human hands for m...
Haptic actuators generate touch sensations and provide realism and depth in human-machine interactio...
Continued technological progress in robotic systems has led to more applications where robots and hu...
Humans possess manual dexterity, motor skills, and other physical abilities that rely on feedback pr...
Soft robotic grippers enable gentle, adaptive, and bioinspired manipulation that is simply not possi...
One of the most valuable contributions robotics can offer is support to daily human activities, yet ...
Developing soft actuators and sensors by means of 3D printing has become an exciting research area. ...
118 pagesSoft robotic systems are inherently safe for human interaction and are able to perform usef...
Soft actuation allows robots to interact safely with humans, other machines, and their surroundings....
Haptics plays a significant role not only in the rehabilitation of neurological disorders, such as s...
Unlike traditional hard grippers, soft robotic grippers are commonly made of soft materials so that ...
In this study, a 3D printed soft robotic hand with embedded soft sensors is designed and developed t...
Herein, the development of complex 3D intelligent structures such as robotic hands using innovative ...
Herein, the development of complex 3D intelligent structures such as robotic hands using innovative ...
In the biomedical field, robotics is used to emulate the movement and dexterity of human hands for m...
In the biomedical field, robotics is used to emulate the movement and dexterity of human hands for m...
Haptic actuators generate touch sensations and provide realism and depth in human-machine interactio...
Continued technological progress in robotic systems has led to more applications where robots and hu...