Wearable Robotic Limb

A wearable robotic limb is an externally worn robotic system that augments, assists, or restores human limb movement, linking mechanical engineering with biomechanics and human-machine interaction. Sensors detect motion, muscle activity, or user intent, while a controller converts these signals into commands for powered joints and actuators that generate coordinated torque and movement. Applications include rehabilitation, mobility assistance, prosthetic function, and industrial load support. Engineering performance depends on accurate sensing, responsive control, ergonomic design, safe human-robot interaction, and efficient power use, making these systems important tools for improving movement, reducing physical strain, and advancing personalized assistive technology.

Wearable Robotic Limb - Related Videos

Research

JoVE Journal - Engineering

A Flexible Wearable Supernumerary Robotic Limb for Chronic Stroke Patients

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Cited by 4 •

2023

This protocol introduces a flexible wearable supernumerary robotic limb tailored to assist in finger rehabilitation for stroke patients. The design incorporates a bending sensor to facilitate seamless human-robot interaction. Validation through experiments involving both healthy volunteers and stroke patients underscores the efficacy and dependability of the proposed study.

Enhancing Upper Limb Function and Motor Skills Post-Stroke Through an Upper Limb Rehabilitation Robot

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Cited by 3 •

2024

This protocol describes an upper limb rehabilitation robot that provides intelligent feedback through four modes. These modes enhance upper limb function and flexibility, thereby improving patients' quality of life.

Application of a Dual Upper Limb Task-Oriented Robotic System for the Functional Recovery of the Upper Limb in Stroke Patients

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Cited by 1 •

2024

This experimental protocol outlines the use of a dual upper limb task-oriented robotic system for stroke patients with upper limb dysfunction. The findings indicate that this system can significantly improve stroke patients' upper limb function and daily living activities.

The Combined Use of Transcranial Direct Current Stimulation and Robotic Therapy for the Upper Limb

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Cited by 6 •

2018

The combined use of transcranial direct current stimulation and robotic therapy as an add-on for conventional rehabilitation therapy may result in improved therapeutic outcomes due to modulation of brain plasticity. In this article, we describe the combined methods used in our institute for improving motor performance after stroke.

Research

JoVE Journal - Behavior
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Using Fiberless, Wearable fNIRS to Monitor Brain Activity in Real-world Cognitive Tasks

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Cited by 162 •

2015

Monitoring brain activity outside the lab without physical constraints presents methodological challenges. A fiberless, wearable functional Near Infrared Spectroscopy (fNIRS) system was used to measure brain activity during an ecological prospective memory task. It was demonstrated that this system could be used to monitor brain activity during non-lab based experiments.

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