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The article focuses on designed construction of the exoskeleton, which significantly reproduces the kinematic structure and the range of joint movement of the human upper limb. The exoskeleton will able to control real objects i.e. loading crane, including force feedback. The designed device, composed of seven rotary joints, is equipped with the closed loop Bowden cable conduit system with linear...
The main goal of this study is to analyse the effects of combined transcranial direct current stimulation (tDCS) and wrist robot-assisted therapy in subacute stroke patients. Twenty-four patients were included in this study and randomly assigned to the experimental (EG) or control group (CG). All participants performed wrist robot-assisted training a) in conjunction with tDCS (real stimulation for...
The main goal of this study is to present preliminary results on the effects of combined transcranial direct current stimulation and wrist robot-assisted therapy in subacute stroke patients. Twelve subacute stroke patients participated in the study and were randomly assigned to the experimental (real stimulation on the affected hemisphere) or control group (sham stimulation). Clinical scales were...
In the last decades, there have been an increasing interest among the researchers to develop robots or robot parts that have close functionally and appearance as human. This paper presents the development of a pair of anthropomorphic robotic hand to perform shoe-tying task to assist the elderly and handicapped, and also for prosthetics and humanoid robot applications. The robotic hand has a close...
The biomechanical analysis done in this project is to assist the development of the robot assisted stroke rehabilitation system. Thus, the analysis of the upper limbpsilas motions focus on rehabilitation training for stroke survivor. As the human upper limb system is a natural biomechanical system, which can be modeled as links connected together by different joints with its own biological properties,...
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