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Interactive IIoT-Based 5DOF Robotic Arm for Upper Limb Telerehabilitation

Preet Parag Modi, Md Samiul Haque Sunny, Md Mahafuzur Rahaman Khan, Helal Uddin Ahmed, Mohammad Habibur Rahman

2022IEEE Access22 citationsDOIOpen Access PDF

Abstract

Significant advancements in contemporary telemedicine applications enforce the demand for effective and intuitive telerehabilitation tools. Telerehabilitation can minimize the distance, travel burden, and costs between rehabilitative patients and therapists. This research introduces an interactive novel telerehabilitation system that integrates the Industrial Internet of Things (IIoT) platform with a robotic manipulator named xARm-5, aiming to deliver rehabilitation therapies to individuals with upper limb dysfunctions. With the proposed system, a therapist can provide upper limb rehab exercises remotely using an augmented reality (AR) user interface (UI) developed using Vuforia Studio, which transmits bidirectional data through the IIoT platform. The proposed system has a stable communication architecture and low teleoperation latency. Experimental results revealed that with the developed telerehabilitation framework, the xArm-5 could be teleoperated from the developed AR platform and/or use a joystick to provide standard upper limb rehab exercises. Besides, with the designed AR-based UI, a therapist can monitor rehab/robot trajectories along with the AR digital twin of the robot, ensuring that the robot is providing passive therapy for shoulder and elbow movements.

Topics & Concepts

TelerehabilitationTeleoperationComputer scienceTelemedicineJoystickVirtual realityRobotTeleroboticsRehabilitationHuman–computer interactionSimulationPhysical medicine and rehabilitationArtificial intelligenceMedicineMobile robotPhysical therapyHealth careEconomic growthEconomicsStroke Rehabilitation and RecoveryEEG and Brain-Computer InterfacesMuscle activation and electromyography studies
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