While newer designs and control approaches are being proposed for rehabilitation robots, vital information from the human musculoskeletal system should also be considered. Incorporating knowledge about joint biomechanics during the development of robot controllers can enhance the safety and performance of robot-aided treatments. In this article, the optimal path or trajectories of a parallel ankle rehabilitation robot were generated by minimizing joint reaction moments and the tension along ligaments and muscle-tendon units. The simulations showed that using optimized robot paths, user efforts could be reduced to 80%, thereby ensuring less strain on weaker or stiffer ligaments, etc. Additionally, to limit the moments applied by the robot in...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...
The ankle is a crucial joint that supports the human body weight. An ankle sprain will adversely aff...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...
The purpose of this study is to develop a 3-DOF robotic-assisted ankle rehabilitation device to faci...
The purpose of this study is to develop a 3-DOF robotic-assisted ankle rehabilitation device to faci...
Introduction: Robot-assisted neuro-rehabilitation is gaining acceptability among the physical therap...
Robotics for human rehabilitation consents to respond on open challenges and opportunities to integr...
Introduction: Robot-assisted neuro-rehabilitation is gaining acceptability among the physical therap...
Abstract Aiming at the problem that the existing ankle rehabilitation robot is difficult to fully fi...
Background: A musculoskeletal model for the ankle complex is vital in order to enhance the understan...
Ankle sprains are the most common type of ankle injuries for the general public. Due to the lack of ...
This paper presents the development of a novel adaptive wearable ankle robot for the treatments of a...
Abstract BackgroundA musculoskeletal model for the ankle complex is vital in order to enhance the un...
This paper presents the development of a novel adaptive wearable ankle robot for the treatments of a...
Abstract — This paper juxtaposes simple yet sufficiently gen-eral robotic mechanisms for ankle funct...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...
The ankle is a crucial joint that supports the human body weight. An ankle sprain will adversely aff...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...
The purpose of this study is to develop a 3-DOF robotic-assisted ankle rehabilitation device to faci...
The purpose of this study is to develop a 3-DOF robotic-assisted ankle rehabilitation device to faci...
Introduction: Robot-assisted neuro-rehabilitation is gaining acceptability among the physical therap...
Robotics for human rehabilitation consents to respond on open challenges and opportunities to integr...
Introduction: Robot-assisted neuro-rehabilitation is gaining acceptability among the physical therap...
Abstract Aiming at the problem that the existing ankle rehabilitation robot is difficult to fully fi...
Background: A musculoskeletal model for the ankle complex is vital in order to enhance the understan...
Ankle sprains are the most common type of ankle injuries for the general public. Due to the lack of ...
This paper presents the development of a novel adaptive wearable ankle robot for the treatments of a...
Abstract BackgroundA musculoskeletal model for the ankle complex is vital in order to enhance the un...
This paper presents the development of a novel adaptive wearable ankle robot for the treatments of a...
Abstract — This paper juxtaposes simple yet sufficiently gen-eral robotic mechanisms for ankle funct...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...
The ankle is a crucial joint that supports the human body weight. An ankle sprain will adversely aff...
This paper presents a new configuration for ankle rehabilitation using a 9-DOF (degree of freedom) h...