Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps

Protecting patient privacy and medical records is a legal requirement. Traditional encryption methods fall short of handling the large volume of medical image data and their peculiar statistical properties. In this paper, we propose a generic medical image encryption framework based on a novel arran...

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Main Authors: Saleh Ibrahim, Hesham Alhumyani, Mehedi Masud, Sultan S. Alshamrani, Omar Cheikhrouhou, Ghulam Muhammad, M. Shamim Hossain, Alaa M. Abbas
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9181562/
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author Saleh Ibrahim
Hesham Alhumyani
Mehedi Masud
Sultan S. Alshamrani
Omar Cheikhrouhou
Ghulam Muhammad
M. Shamim Hossain
Alaa M. Abbas
author_facet Saleh Ibrahim
Hesham Alhumyani
Mehedi Masud
Sultan S. Alshamrani
Omar Cheikhrouhou
Ghulam Muhammad
M. Shamim Hossain
Alaa M. Abbas
author_sort Saleh Ibrahim
collection DOAJ
description Protecting patient privacy and medical records is a legal requirement. Traditional encryption methods fall short of handling the large volume of medical image data and their peculiar statistical properties. In this paper, we propose a generic medical image encryption framework based on a novel arrangement of two very efficient constructs, dynamic substitution boxes (S-boxes) and chaotic maps. The arrangement of S-box substitution before and after chaotic substitution is shown to successfully resist chosen plaintext and chosen ciphertext attacks. Special precautions are taken to fend off the reset attack against pseudorandom number generators. We show how to implement the generic framework using any key-dependent dynamic S-box construction method and any chaotic map. Experimental results show that the proposed framework successfully passes all security tests regardless of the chaotic map used for implementation. Based on speed analysis, we recommend the use of the classical Baker map or Henon map to achieve encryption throughput approaching 90 MB/s on a modern PC without hardware acceleration.
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spelling doaj.art-429d53c764d04a58b1c6157ec1f123b82022-12-21T20:30:35ZengIEEEIEEE Access2169-35362020-01-01816043316044910.1109/ACCESS.2020.30207469181562Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic MapsSaleh Ibrahim0https://orcid.org/0000-0002-7135-9366Hesham Alhumyani1Mehedi Masud2https://orcid.org/0000-0001-6019-7245Sultan S. Alshamrani3https://orcid.org/0000-0001-8194-9354Omar Cheikhrouhou4https://orcid.org/0000-0002-9898-3898Ghulam Muhammad5https://orcid.org/0000-0002-9781-3969M. Shamim Hossain6https://orcid.org/0000-0001-5906-9422Alaa M. Abbas7https://orcid.org/0000-0003-0929-161XDepartment of Electrical Engineering, College of Engineering, Taif University, Al-Hawiya, Saudi ArabiaCollege of Computer and Information Technology, Taif University, Al-Hawiya, Saudi ArabiaCollege of Computer and Information Technology, Taif University, Al-Hawiya, Saudi ArabiaCollege of Computer and Information Technology, Taif University, Al-Hawiya, Saudi ArabiaCollege of Computer and Information Technology, Taif University, Al-Hawiya, Saudi ArabiaDepartment of Computer Engineering, College of Computer and Information Sciences, King Saud University, Riyadh, Saudi ArabiaDepartment of Software Engineering, College of Computer and Information Sciences, King Saud University, Riyadh, Saudi ArabiaDepartment of Electrical Engineering, College of Engineering, Taif University, Al-Hawiya, Saudi ArabiaProtecting patient privacy and medical records is a legal requirement. Traditional encryption methods fall short of handling the large volume of medical image data and their peculiar statistical properties. In this paper, we propose a generic medical image encryption framework based on a novel arrangement of two very efficient constructs, dynamic substitution boxes (S-boxes) and chaotic maps. The arrangement of S-box substitution before and after chaotic substitution is shown to successfully resist chosen plaintext and chosen ciphertext attacks. Special precautions are taken to fend off the reset attack against pseudorandom number generators. We show how to implement the generic framework using any key-dependent dynamic S-box construction method and any chaotic map. Experimental results show that the proposed framework successfully passes all security tests regardless of the chaotic map used for implementation. Based on speed analysis, we recommend the use of the classical Baker map or Henon map to achieve encryption throughput approaching 90 MB/s on a modern PC without hardware acceleration.https://ieeexplore.ieee.org/document/9181562/Bijective substitution boxchaotic mapimage encryption
spellingShingle Saleh Ibrahim
Hesham Alhumyani
Mehedi Masud
Sultan S. Alshamrani
Omar Cheikhrouhou
Ghulam Muhammad
M. Shamim Hossain
Alaa M. Abbas
Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
IEEE Access
Bijective substitution box
chaotic map
image encryption
title Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
title_full Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
title_fullStr Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
title_full_unstemmed Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
title_short Framework for Efficient Medical Image Encryption Using Dynamic S-Boxes and Chaotic Maps
title_sort framework for efficient medical image encryption using dynamic s boxes and chaotic maps
topic Bijective substitution box
chaotic map
image encryption
url https://ieeexplore.ieee.org/document/9181562/
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