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AI-Powered Adaptive Disability Prediction and Healthcare Analytics Using Smart Technologies
Malak Alamri1,2, Mamoona Humayun3, Khalid Haseeb4
1Department of Computer Science, College of Computer and Information Sciences, Jouf University, Sakaka 72311, Saudi Arabia.
Diagnostics (Basel, Switzerland)
|August 28, 2025
Summary
This study introduces an adaptive framework using the Internet of Medical Things (IoMT), edge computing, and AI for accurate, real-time disability identification. It enhances data security and personalized healthcare interventions for better chronic disease management.
Area of Science:
- Health Informatics
- Biomedical Engineering
- Artificial Intelligence in Healthcare
Background:
- Healthcare Industry 5.0 utilizes wireless technologies for continuous patient monitoring via biosensors.
- Existing systems face scalability and reliability challenges in timely personalized disease detection.
- Continuous monitoring is crucial for accurate diagnosis, especially for chronic conditions.
Purpose of the Study:
- To propose an adaptive and secure framework for disability identification using IoMT, edge computing, and AI.
- To address limitations in timely disease detection and enhance personalized healthcare.
- To improve the security and reliability of medical data analytics.
Main Methods:
- Integration of lightweight edge computing for rapid data collection from biosensors.
- Implementation of decentralized strategies for secure big data analytics and authentic data access.
- Utilizing federated learning and lightweight encryption for data protection.
Main Results:
- High accuracy in edge-based disability detection.
- Enhanced prompt response times for cloud servers.
- Guaranteed security of sensitive medical data through advanced techniques.
Conclusions:
- The proposed framework provides a secure and efficient solution for disability identification.
- Leverages IoMT, edge computing, and AI to overcome real-time monitoring challenges.
- Enhances diagnostic accuracy and ensures sensitive medical data protection.

