AIMC Topic: Robotics

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Let's do this together: Bi-Manu-Interact, a novel device for studying human haptic interactive behavior.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
Our area of interest is robotic-based rehabilitation after stroke, and our goal is to help patients achieve optimal motor learning during high-intensity repetitive movement training through the assistance of robots. It is important, that the robotic ...

Hybrid position and orientation tracking for a passive rehabilitation table-top robot.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
This paper presents a real time hybrid 2D position and orientation tracking system developed for an upper limb rehabilitation robot. Designed to work on a table-top, the robot is to enable home-based upper-limb rehabilitative exercise for stroke pati...

The effects of auditory and visual cues on timing synchronicity for robotic rehabilitation.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
In this paper, we explore how the integration of auditory and visual cues can help teach the timing of motor skills for the purpose of motor function rehabilitation. We conducted a study using Amazon's Mechanical Turk in which 106 participants played...

Robots testing robots: ALAN-Arm, a humanoid arm for the testing of robotic rehabilitation systems.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
Robotics is increasing in popularity as a method of providing rich, personalized and cost-effective physiotherapy to individuals with some degree of upper limb paralysis, such as those who have suffered a stroke. These robotic rehabilitation systems ...

Nonlinear disturbance observer based sliding mode control of a cable-driven rehabilitation robot.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
This paper introduces a cable-driven robot for upper-limb rehabilitation. Kinematic and dynamic of this rehabilitation robot is analyzed. A sliding mode controller combined with a nonlinear disturbance observer is proposed to control this robot in th...

Utilization of kinematical redundancy of a rehabilitation robot to produce compliant motions under limitation on actuator performance.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
This paper addresses the mechanical structure and control method of a redundant drive robot (RDR) to produce compliant motions, and show how the design parameters of the RDR can effect the produced motions and the mechanical and performance limitatio...

Fully embedded myoelectric control for a wearable robotic hand orthosis.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
To prevent learned non-use of the affected hand in chronic stroke survivors, rehabilitative training should be continued after discharge from the hospital. Robotic hand orthoses are a promising approach for home rehabilitation. When combined with int...

The effects of age and amplitude on wrist proprioceptive acuity.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
This study examined wrist proprioception in a cross-sectional sample of 44 children aged between 8-to 14-years and a control group of 10 neurologically and physically healthy adults. Using a 3-degrees of freedom robotic device, participants performed...

Validation of the efficiency of a robotic rehabilitation training system for recovery of severe plegie hand motor function after a stroke.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
We have developed a rehabilitation training system called the Useful and Ultimate Rehabilitation System PARKO (UR System PARKO) to promote the recovery of motor function of the severe chronic plegic hand of stroke patients. This system was equipped w...

Interaction force and motion estimators facilitating impedance control of the upper limb rehabilitation robot.

IEEE ... International Conference on Rehabilitation Robotics : [proceedings]
In order to enhance the performance of rehabilitation robots, it is imperative to know both force and motion caused by the interaction between user and robot. However, common direct measurement of both signals through force and motion sensors not onl...