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Main Authors: Zhang, Mingcui, Jia, Zhigang
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2510.27307
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author Zhang, Mingcui
Jia, Zhigang
author_facet Zhang, Mingcui
Jia, Zhigang
contents Medical images play a crucial role in assisting diagnosis, remote consultation, and academic research. However, during the transmission and sharing process, they face serious risks of copyright ownership and content tampering. Therefore, protecting medical images is of great importance. As an effective means of image copyright protection, zero-watermarking technology focuses on constructing watermarks without modifying the original carrier by extracting its stable features, which provides an ideal approach for protecting medical images. This paper aims to propose a fragile zero-watermarking model based on dual quaternion matrix decomposition, which utilizes the operational relationship between the standard part and the dual part of dual quaternions to correlate the original carrier image with the watermark image, and generates zero-watermarking information based on the characteristics of dual quaternion matrix decomposition, ultimately achieving copyright protection and content tampering detection for medical images.
format Preprint
id arxiv_https___arxiv_org_abs_2510_27307
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A fragile zero-watermarking method based on dual quaternion matrix decomposition
Zhang, Mingcui
Jia, Zhigang
Image and Video Processing
Computer Vision and Pattern Recognition
Numerical Analysis
65F99
G.1.3
Medical images play a crucial role in assisting diagnosis, remote consultation, and academic research. However, during the transmission and sharing process, they face serious risks of copyright ownership and content tampering. Therefore, protecting medical images is of great importance. As an effective means of image copyright protection, zero-watermarking technology focuses on constructing watermarks without modifying the original carrier by extracting its stable features, which provides an ideal approach for protecting medical images. This paper aims to propose a fragile zero-watermarking model based on dual quaternion matrix decomposition, which utilizes the operational relationship between the standard part and the dual part of dual quaternions to correlate the original carrier image with the watermark image, and generates zero-watermarking information based on the characteristics of dual quaternion matrix decomposition, ultimately achieving copyright protection and content tampering detection for medical images.
title A fragile zero-watermarking method based on dual quaternion matrix decomposition
topic Image and Video Processing
Computer Vision and Pattern Recognition
Numerical Analysis
65F99
G.1.3
url https://arxiv.org/abs/2510.27307