Sencar, Hüsrev TahaMemon, Nasir D.2022-09-072022-09-072014-12Dirik, A. E. vd. (2014). "Analysis of seam-carving-based anonymization of images against PRNU noise pattern-based source attribution". IEEE Transactions on Information Forensics and Security, 9(12), 2277-2290.1556-60131556-6021https://doi.org/10.1109/TIFS.2014.2361200https://ieeexplore.ieee.org/abstract/document/6914598http://hdl.handle.net/11452/28528The availability of sophisticated source attribution techniques raises new concerns about privacy and anonymity of photographers, activists, and human right defenders who need to stay anonymous while spreading their images and videos. Recently, the use of seam-carving, a content-aware resizing method, has been proposed to anonymize the source camera of images against the well-known photoresponse nonuniformity (PRNU)-based source attribution technique. In this paper, we provide an analysis of the seam-carving-based source camera anonymization method by determining the limits of its performance introducing two adversarial models. Our analysis shows that the effectiveness of the deanonymization attacks depend on various factors that include the parameters of the seam-carving method, strength of the PRNU noise pattern of the camera, and an adversary's ability to identify uncarved image blocks in a seam-carved image. Our results show that, for the general case, there should not be many uncarved blocks larger than the size of 50x50 pixels for successful anonymization of the source camera.eninfo:eu-repo/semantics/closedAccessPRNU noise patternSeam-carvingSource attributionAnonymizationDe-anonymization attacksCounter-forensicsDigital camera identificationSensorComputer scienceEngineeringAnonymizationContent-awareDeanonymizationPhotoresponse nonuniformityPRNU noiseSeam-carvingSource attributionSource attribution techniquesCamerasAnalysis of seam-carving-based anonymization of images against PRNU noise pattern-based source attributionArticle0003532902000092-s2.0-8491119195722772290912Computer science, theory & methodsEngineering, electrical & electronicDigital Image; Tampering; Discrete Cosine Transforms