π Over 50,000 Project Materials
π± 100% Offline: No internet needed
π Over 98 Departments
π Software coding and Machine construction
π Postgraduate/Undergraduate Research works
π₯ Instant Whatsapp/Email Delivery
Showing 1-30 of 157 projects
Stroke remains a leading cause of long-term disability worldwide, with impaired gait significantly impacting mobility, independence, and quality of life. This s...
This study presents the development and comprehensive evaluation of an AI-powered wearable system designed to objectively assess and train upper-limb motor func...
This study presents an integrated framework for automated gait analysis and personalized assistive device optimization for post-stroke rehabilitation through AI...
This study presents the development and evaluation of a smart assistive wearable designed to enhance gait rehabilitation through sensor fusion and real-time bio...
This study presents a smartphone-based assistive gait training system designed to enhance post-stroke rehabilitation through real-time feedback and machine lear...
This study presents the development and evaluation of a smart 3D-printed assistive device for hand rehabilitation that integrates real-time motion tracking with...
Stroke remains a leading cause of long-term upper-limb disability, with motor impairments limiting independence and quality of life. This study presents the dev...
This study presents a novel tele-rehabilitation framework that integrates machine learning-driven personalized gait retraining to address post-stroke lower-limb...
This study presents the development and evaluation of a smartphone-based gait analysis and real-time feedback system designed to assist post-stroke rehabilitati...
This study presents a smart exoskeleton-assisted gait rehabilitation system for post-stroke patients utilizing multimodal sensor fusion to deliver personalized,...
A smartphone-based telerehabilitation platform is developed to enhance post-stroke upper-limb motor recovery by delivering immersive, home-based therapy session...
This study presents the design, development, and evaluation of an AI-powered assistive robotics gait-training system for post-stroke motor rehabilitation, integ...
This study presents a comprehensive investigation into the integration of biomechanical analysis with artificial intelligence (AI)-guided robotic-assisted thera...
A wearable sensor-based biofeedback system for upper-limb stroke rehabilitation was developed to enhance motor recovery by leveraging real-time motor intent det...
This study presents the development and evaluation of an AI-driven home-based rehabilitation program that provides real-time kinematic feedback for post-stroke ...
This study presents the development and evaluation of a smart assistive exoskeleton designed to enhance gait rehabilitation through real-time electromyography (...
This study presents the design, implementation, and evaluation of an innovative wearable biofeedback system for real-time gait rehabilitation in post-stroke pat...
This study presents the design, control, and clinical validation of a wearable sensor-integrated exoskeleton intended for upper-limb neurorehabilitation in post...
The proposed study develops a smartphone-based biofeedback system to enhance upper-limb motor rehabilitation by leveraging low-cost inertial measurement units (...
This study presents a smartphone-based perception-driven gait rehabilitation system that leverages computer vision, sensor fusion, and real-time feedback to enh...
This study presents the design, implementation, and evaluation of a robot-assisted gait rehabilitation system for post-stroke patients that integrates real-time...
The increasing prevalence of lower limb disabilities due to conditions such as stroke, spinal cord injuries, and neurological disorders underscores the critical...
Stroke is a leading cause of long-term disability worldwide, often resulting in impairments in motor functions that significantly diminish a patient's quality o...
This research proposes the development of an innovative AI-powered exoskeleton designed to enhance lower limb rehabilitation for patients recovering from neurol...
Stroke remains one of the leading causes of long-term disability worldwide, necessitating effective and personalized rehabilitation strategies to enhance patien...
This research presents the development of an innovative AI-powered personalized rehabilitation robot designed specifically for post-stroke patients to enhance r...
This research explores the development of an advanced, AI-powered control system designed to enhance the functionality and natural mobility of prosthetic limbs ...
This research focuses on designing and developing an advanced, intelligent exoskeleton system aimed at improving gait rehabilitation outcomes for post-stroke pa...
Stroke remains a leading cause of long-term disability globally, often resulting in impaired gait and reduced mobility that significantly diminish patientsβ q...
The development of an AI-powered sensor system for real-time gait analysis and rehabilitation monitoring aims to enhance the precision, efficiency, and effectiv...