International audienceIn this paper, we address the problem of tracking the temporal evolution of arbitrary shapes observed in multi-camera setups. This is motivated by the ever growing number of applications that require consistent shape information along temporal sequences. The approach we propose considers a temporal sequence of independently reconstructed surfaces and iteratively deforms a reference mesh to fit these observations. To effectively cope with outlying and missing geometry, we introduce a novel probabilistic mesh deformation framework. Using generic local rigidity priors and accounting for the uncertainty in the data acquisition process, this framework effectively handles missing data, relatively large reconstruction artefac...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
International audienceIn this paper, we address the problem of tracking the temporal evolution of ar...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
International audienceIn this paper we propose a new method to capture the temporal evolution of a s...
International audienceWe present a novel methodology for the analysis of complex object shapes in mo...
International audienceWe present a novel methodology for the analysis of complex object shapes in mo...
International audienceIn this paper we propose a new method to capture the temporal evolution of a s...
International audienceWe present a novel probabilistic framework for rigid tracking and segmentation...
International audienceIn this paper, we address the problem of surface tracking in multiple camera e...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
International audienceIn this paper, we address the problem of tracking the temporal evolution of ar...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
International audienceIn this paper we propose a new method to capture the temporal evolution of a s...
International audienceWe present a novel methodology for the analysis of complex object shapes in mo...
International audienceWe present a novel methodology for the analysis of complex object shapes in mo...
International audienceIn this paper we propose a new method to capture the temporal evolution of a s...
International audienceWe present a novel probabilistic framework for rigid tracking and segmentation...
International audienceIn this paper, we address the problem of surface tracking in multiple camera e...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...
International audienceIn this paper we present a method to iteratively capture the dynamic evolution...
In this thesis we address the problem of digitizing the motion of three-dimensional shapes that move...