We introduce a framework for analyzing symmetry of 2D and 3D objects using elastic deformations of their boundaries. The basic idea is to define spaces of elastic shapes and to compute shortest (geodesic) paths between the objects and their reflections using a Riemannian structure. Elastic matching, based on optimal (nonlinear) re-parameterizations of curves, provides a better registration of points across shapes, as compared to the previously-used linear registrations. A crucial step of orientation alignment, akin to finding planes of symmetry, is performed as a search for shortest geodesic paths. This framework is fully automatic and provides: a measure of asymmetry, the nearest symmetric shape, the optimal deformation to make an object s...
International audienceThis paper presents a planar curve matching framework based on computing simil...
This study presents a new shape representation scheme based on disconnected symmetry axes along with...
International audienceThis paper presents a planar curve matching framework based on computing simil...
Abstract: We introduce a framework for analyzing symmetry of 2D and 3D objects using elastic deforma...
We introduce a framework for analyzing symmetry of 3D anatomical structures using elastic deformatio...
We propose an efficient representation for studying shapes of closed curves in Rn. This paper combin...
This paper illustrates and extends an efficient framework, called the square-root-elastic (SRE) fram...
Ministry of Education, Youth and Sports of the Czech Repub-lic, project PUNTIS (LO1506) under the pr...
PUNTIS (LO1506), SGS-2019-016Symmetry occurs very commonly in real world objects as well as in artif...
This paper presents seven different symmetry parameters measuring the degree of symmetry according t...
We introduce a shape descriptor that is based on the Symmetry Set. This set represents pairwise symm...
Symmetry is an essential property of a shapes ’ appearance and presents a source of information for ...
We argue that full surface correspondence (registration) and optimal deformations (geodesics) are tw...
International audienceThis paper presents a planar curve matching framework based on computing simil...
International audienceThis paper presents a planar curve matching framework based on computing simil...
International audienceThis paper presents a planar curve matching framework based on computing simil...
This study presents a new shape representation scheme based on disconnected symmetry axes along with...
International audienceThis paper presents a planar curve matching framework based on computing simil...
Abstract: We introduce a framework for analyzing symmetry of 2D and 3D objects using elastic deforma...
We introduce a framework for analyzing symmetry of 3D anatomical structures using elastic deformatio...
We propose an efficient representation for studying shapes of closed curves in Rn. This paper combin...
This paper illustrates and extends an efficient framework, called the square-root-elastic (SRE) fram...
Ministry of Education, Youth and Sports of the Czech Repub-lic, project PUNTIS (LO1506) under the pr...
PUNTIS (LO1506), SGS-2019-016Symmetry occurs very commonly in real world objects as well as in artif...
This paper presents seven different symmetry parameters measuring the degree of symmetry according t...
We introduce a shape descriptor that is based on the Symmetry Set. This set represents pairwise symm...
Symmetry is an essential property of a shapes ’ appearance and presents a source of information for ...
We argue that full surface correspondence (registration) and optimal deformations (geodesics) are tw...
International audienceThis paper presents a planar curve matching framework based on computing simil...
International audienceThis paper presents a planar curve matching framework based on computing simil...
International audienceThis paper presents a planar curve matching framework based on computing simil...
This study presents a new shape representation scheme based on disconnected symmetry axes along with...
International audienceThis paper presents a planar curve matching framework based on computing simil...