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Security Techniques for Remote Healthcare Systems (رقم التسجيلة. 18341)
[ عرض عادي ]
| 100 1# - 100 | |
|---|---|
| a | BEGGAS, Mounir |
| 245 00 - 245 | |
| a | Security Techniques for Remote Healthcare Systems |
| 260 ## - 260 | |
| b | Universite Chahid Hamma Lakhdar d'El-Oued |
| c | 2025 |
| 942 ## - 942 | |
| c | THESIS |
| 999 ## - 999 | |
| c | 18341 |
| d | 18341 |
| 952 ## - 952 | |
| 9 | 44859 |
| a | MAIN |
| b | MAIN |
| d | 2026-06-02 |
| o | TD006/007/01 |
| p | MAIN-1-16632 |
| y | THESIS |
| 500 ## - 500 | |
| -- | Security Techniques for Remote Healthcare Systems |
| 520 ## - 520 | |
| -- | The Internet of Medical Things (IoMT) has revolutionized healthcare by utilizing<br/>IoT devices and diverse data sources to provide personalized and efficient<br/>care through real-time communication, remote monitoring, and diagnostics. Medical<br/>images, central to IoMT systems, require robust security measures to prevent<br/>unauthorized access and ensure integrity. However, their sensitive nature, complex<br/>networks, and large file sizes increase vulnerability to cyberattacks and unauthorized<br/>modifications, which could lead to improper diagnoses and treatments.<br/>This research introduces several innovative advancements to strengthen IoMT security.<br/>A novel encryption technique is proposed to reduce processing time and<br/>image size while maintaining robust security. A hybrid crypto-system integrates<br/>encryption and watermarking to protect medical images efficiently. A lightweight<br/>watermarking algorithm based on K-means clustering enhances tamper detection<br/>with minimal computational overhead. A blockchain-based watermarking scheme<br/>ensures tamper-proof image transmission without third-party involvement. Furthermore,<br/>a clustering algorithm is designed to preserve data privacy in resourceconstrained<br/>IoMT environments, and a dual watermarking framework provides<br/>comprehensive tamper detection and authentication.<br/>These contributions collectively enhance IoMT security, reliability, and applicability,<br/>supporting the evolution of remote healthcare. The proposed solutions are<br/>validated through simulations and real-world scenarios involving network devices. |
| 650 #4 - 650 | |
| -- | /Security//Techniques//for//Remote//Healthcare//Systems/ |
| 700 1# - 700 | |
| -- | Kahla, Mohammed Elhabib |
| 700 1# - 700 | |
| -- | LAOUID, Abdelkader |
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