Background: Interlimb neural coupling implies that arm swing should be included during gait training to improve rehabilitation outcomes. We previously developed several systems for production of walking with arm swing, but the reaction forces on the foot sole during usage of the systems were not satisfactory and there was potential to improve control system performance. This work aimed to design and technically evaluate a novel system for producing walking with synchronised arm and leg movement and with dynamic force loading on the foot soles. Methods: The robotic system included a passive curved treadmill and a trunk frame, upon which the rigs for the upper and lower limbs were mounted. Ten actuators and servocontrollers with EtherCAT c...
A biologically inspired motion control method is introduced to ameliorate the flexibility and multij...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Abstract — Understanding the neuromuscular control under-lying human locomotion has the potential to...
We present work to transfer decentralized neuromuscular control strategies of human locomotion to po...
Recognising the user’s locomotive intentions is crucial for the correct functionality of exoskeleton...
In a parallel development to traditional rigid rehabilitation robotic systems, cable-driven systems ...
The restoration of walking capability is a key goal after stroke, traumatic brain injury and spinal ...
In a parallel development to traditional rigid rehabilitation robotic systems, cable-driven systems ...
While most take their ability to walk for granted, some are unable to walk due to any number of path...
While most take their ability to walk for granted, some are unable to walk due to any number of path...
Building robotic devices able to replicate the human behavior to obtain motor recovery, functional s...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
In the past decade, advanced technologies in robotics have been explored to enhance the rehabilitati...
Therapeutic exercises play an important role in physical therapy and rehabilitation. The use of robo...
Gait training or gait rehabilitation is one of the major physiotherapy for stroke patients. Evidentl...
A biologically inspired motion control method is introduced to ameliorate the flexibility and multij...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Abstract — Understanding the neuromuscular control under-lying human locomotion has the potential to...
We present work to transfer decentralized neuromuscular control strategies of human locomotion to po...
Recognising the user’s locomotive intentions is crucial for the correct functionality of exoskeleton...
In a parallel development to traditional rigid rehabilitation robotic systems, cable-driven systems ...
The restoration of walking capability is a key goal after stroke, traumatic brain injury and spinal ...
In a parallel development to traditional rigid rehabilitation robotic systems, cable-driven systems ...
While most take their ability to walk for granted, some are unable to walk due to any number of path...
While most take their ability to walk for granted, some are unable to walk due to any number of path...
Building robotic devices able to replicate the human behavior to obtain motor recovery, functional s...
The gait of every adult is unique and expected to be ingrained within the neuromuscular system. The ...
In the past decade, advanced technologies in robotics have been explored to enhance the rehabilitati...
Therapeutic exercises play an important role in physical therapy and rehabilitation. The use of robo...
Gait training or gait rehabilitation is one of the major physiotherapy for stroke patients. Evidentl...
A biologically inspired motion control method is introduced to ameliorate the flexibility and multij...
Robotic exoskeletons see much potential in the field of assisted gait rehabilitation. Particularly w...
Abstract — Understanding the neuromuscular control under-lying human locomotion has the potential to...