2 research outputs found

    Digital Deformable Model Simulating Active Contours

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    International audienceDeformable models are continuous energy-minimizing techniques that have been successfully applied to image segmentation and tracking since twenty years. This paper defines a novel purely digital deformable model (DDM), whose internal energy is based on the minimum length polygon (MLP). We prove that our combinatorial regularization term has convex-like properties: any local descent on the energy leads to a global optimum. Similarly to the continuous case where the optimum is a straight segment, our DDM stops on a digital straight segment. The DDM shares also the same behaviour as its continuous counterpart on images

    Simulaci贸n din谩mica y deformaciones de superf铆cies param茅tricas

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    Se desarrolla un modelo basado en NURBS, BSplines4D, de representaci贸n de superficies parametrizadas en 4D. El objetivo es la representaci贸n y simulaci贸n din谩mica de superficies deformables basadas en el modelo; se realiza un estudio de las ecuaciones del movimiento, asociando un funcional de energ铆a para medir la deformaci贸n de objetos, realizando un estudio riguroso sobre los m茅todos de integraci贸n y de discretizaci贸n, tanto temporal como espacial, determinando su adecuaci贸n para resolver el sistema de ecuaciones diferenciales generado. El movimiento y la simulaci贸n de la deformaci贸n se realizan exclusivamente usando los puntos de control 4D, obteniendo una eficiencia num茅rica y computacional excelentes. La determinaci贸n del modelo BSplines4D se realiza tras un estudio pormenorizado de los modelos existentes. Tambi茅n se ha utilizado para desarrollar un modelo, N-Scodef, de deformaciones de formas libres (FFD), utilizando deformaciones geom茅tricas basadas en restricciones. Se han establecido las condiciones para aplicar restricciones con trayectorias no rectil铆neas, representadas por curvas B-Spline 4D. La deformaci贸n se adapta de forma precisa a la forma descrita por las curvasEs desenvolupa un model basat en NURBS, Bsplines4D, de representaci贸 de superf铆cies parametritzades en 4D. L'objectiu 茅s la representaci贸 i simulaci贸 din脿mica de superf铆cies deformables basades en el model; es realitza un estudi de les equacions del moviment, associant un funcional d'energia per mesurar la deformaci贸 d'objectes, realitzant un estudi rigor贸s sobre els m猫todes d'integraci贸 i discretitzaci贸, tant temporal com espacial, determinant la seva adequaci贸 per resoldre el sistema d'equacions diferencials generat. El moviment i la simulaci贸 de la deformaci贸 es realitzen exclusivament utilitzant els punts de control 4D, obtenint una efici猫ncia num猫rica i computacional excel路lents. La determinaci贸 del model Bsplines4D es realitza despr茅s d'un estudi detallat dels models existents. Tamb茅 s'ha utilitzat per desenvolupar un model, N-Scodef, de deformacions de formes lliures (FFD), utilitzant deformacions geom猫triques basades en restriccions. S'han establert les condicions per aplicar restriccions amb traject貌ries no rectil铆nies, representades per corbes B-Spline 4D. La deformaci贸 s'adapta de forma precisa a la forma descrita per les corbesBsplines4D, a NURBS based model, is presented. The model allows the representation of 4D parameterized surfaces. The objective is the representation and dynamic simulation of deformable surfaces based on this model; a study of the movement equations has been made, associating to them an energy functional to measure the objects' deformation. A rigorous study on the integration and discretization, both temporal and spatial, is made to evaluate its suitability to solve the system of differential equations generated. The movement and simulation of the deformation is performed only using the 4D control points. An excellent numeric and computational efficiency is achieved. The Bsplines4D model is obtained after a detailed study on the existent models. The model has been also used to develop a free-form deformable (FFD) model, N-Scodef, using geometric constraint-based deformations. The conditions to apply constraints with non rectilinear trajectories, based on 4D B-Spline curves, have been established. The deformations fit precisely to the curves form
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