Motion deblurring problems are considered, however, as additional difficulty we consider that the motion occurs in front of a still background. First we propose a model for the formation of this kind of partly blurred...
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In this paper, we develop a variational method for the computation of average images of biological organs in three-dimensional Euclidean space. the average of three-dimensional biological organs is an essential featur...
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High resolution reconstruction of 3D surfaces from images remains an active area of research since most of the methods in use are based on practical assumptions that limit their applicability. Furthermore, an addition...
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Segmenting the image into an arbitrary number of parts is at the core of image understanding. Many formulations of the task have been suggested over the years. Among these are axiomatic functionals, which are hard to ...
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A variational approach to defining geodesics in the space of implicitly described shapes is introduced in this paper. the proposed framework is based on the time discretization of a geodesic path as a sequence of pair...
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ISBN:
(纸本)9783642036408
A variational approach to defining geodesics in the space of implicitly described shapes is introduced in this paper. the proposed framework is based on the time discretization of a geodesic path as a sequence of pairwise matching problems, which is strictly invariant with respect to rigid body motions and ensures a 1-1 property of the induced flow in shape space. For decreasing time step size, the proposed model leads to the minimization of the actual geodesic length, where the Hessian of the pairwise matching energy reflects the chosen Riemannian metric on the shape space. Considering shapes as boundary contours, the proposed shape metric is identical to a physical dissipation in a viscous fluid model of optimal transportation. If the pairwise shape correspondence is replaced by the volume of the shape mismatch as a penalty functional, for decreasing time step size one obtains an additional optical flow term controlling the transport of the shape by the underlying motion field. the implementation of the proposed approach is based oil a level set representation of shapes, which allows topological transitions along the geodesic path. For the spatial discretization a finite element approximation is employed both for the pairwise deformations and for the level set representation. the numerical relaxation of the energy is performed via all efficient multi-scale procedure in space and time. Examples for 2D and 3Dd shapes underline the effectiveness and robustness of the proposed approach.
this book constitutes the proceedings of the 7th international conference on scale space and variational methods in computer vision, ssvm 2019, held in Hofgeismar, Germany, in June/July 2019. the 44 papers includ...
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ISBN:
(数字)9783030223687
ISBN:
(纸本)9783030223670
this book constitutes the proceedings of the 7th international conference on scale space and variational methods in computer vision, ssvm 2019, held in Hofgeismar, Germany, in June/July 2019. the 44 papers included in this volume were carefully reviewed and selected for inclusion in this book. they were organized in topical sections named: 3D vision and feature analysis; inpainting, interpolation and compression; inverse problems in imaging; optimization methods in imaging; PDEs and level-set methods; registration and reconstruction; scale-spacemethods; segmentation and labeling; and variationalmethods.
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