Multiscale Methods in Image Modelling and Image Processing

dc.contributor.authorAlexander, Simonen
dc.date.accessioned2006-08-22T14:22:50Z
dc.date.available2006-08-22T14:22:50Z
dc.date.issued2005en
dc.date.submitted2005en
dc.description.abstractThe field of modelling and processing of 'images' has fairly recently become important, even crucial, to areas of science, medicine, and engineering. The inevitable explosion of imaging modalities and approaches stemming from this fact has become a rich source of mathematical applications. <br /><br /> 'Imaging' is quite broad, and suffers somewhat from this broadness. The general question of 'what is an image?' or perhaps 'what is a natural image?' turns out to be difficult to address. To make real headway one may need to strongly constrain the class of images being considered, as will be done in part of this thesis. On the other hand there are general principles that can guide research in many areas. One such principle considered is the assertion that (classes of) images have multiscale relationships, whether at a pixel level, between features, or other variants. There are both practical (in terms of computational complexity) and more philosophical reasons (mimicking the human visual system, for example) that suggest looking at such methods. Looking at scaling relationships may also have the advantage of opening a problem up to many mathematical tools. <br /><br /> This thesis will detail two investigations into multiscale relationships, in quite different areas. One will involve Iterated Function Systems (IFS), and the other a stochastic approach to reconstruction of binary images (binary phase descriptions of porous media). The use of IFS in this context, which has often been called 'fractal image coding', has been primarily viewed as an image compression technique. We will re-visit this approach, proposing it as a more general tool. Some study of the implications of that idea will be presented, along with applications inferred by the results. In the area of reconstruction of binary porous media, a novel, multiscale, hierarchical annealing approach is proposed and investigated.en
dc.formatapplication/pdfen
dc.format.extent13449855 bytes
dc.format.mimetypeapplication/pdf
dc.identifier.urihttp://hdl.handle.net/10012/1179
dc.language.isoenen
dc.pendingfalseen
dc.publisherUniversity of Waterlooen
dc.rightsCopyright: 2005, Alexander, Simon. All rights reserved.en
dc.subjectMathematicsen
dc.subjectiterated function systemsen
dc.subjectIFSen
dc.subjectIFSMen
dc.subjectIFSWen
dc.subjectrandom fieldsen
dc.subjectMCMCen
dc.subjectsimulated annealingen
dc.subjectmultiscaleen
dc.subjectimage modellingen
dc.subjectimage processingen
dc.titleMultiscale Methods in Image Modelling and Image Processingen
dc.typeDoctoral Thesisen
uws-etd.degreeDoctor of Philosophyen
uws-etd.degree.departmentApplied Mathematicsen
uws.peerReviewStatusUnrevieweden
uws.scholarLevelGraduateen
uws.typeOfResourceTexten

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