This paper presents a novel system for the 3D capture of facial performance using standard video and lighting equipment. The mesh of an actor's face is tracked non-sequentially throughout a performance using multi-view image sequences. The minimum spanning tree calculated in expression dissimilarity space defines the traversal of the sequences optimal with respect to error accumulation. A robust patch-based frame-to-frame surface alignment combined with the optimal traversal significantly reduces drift compared to previous sequential techniques. Multi-path temporal fusion resolves inconsistencies between different alignment paths and yields a final mesh sequence which is temporally consistent. The surface tracking framework is coupled with ...
Figure 1: High-quality facial performance capture for two actors. The resulting meshes are in full v...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...
This paper presents a novel system for the 3D capture of facial performance using standard video and...
Abstract—This paper presents a novel system for the 3D capture of facial performance using standard ...
Capturing a realistic digital copy of a facial performance has high importance for film and televisi...
Capturing a realistic digital copy of a facial performance has high importance for film and televisi...
This thesis presents methods for the temporal alignment of 3D performance capture data. Discussion o...
Figure 1: Sample results of our tracking aproach with two wide baseline input cameras In this paper,...
In this paper, we present a method for detailed temporally consistent facial performance capture tha...
We present a novel technique for acquiring detailed facial geometry of a dynamic performance using e...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
Abstract. This paper addresses the problem of optimal alignment of non-rigid surfaces from multi-vie...
Figure 1: High-quality facial performance capture for two actors. The resulting meshes are in full v...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...
This paper presents a novel system for the 3D capture of facial performance using standard video and...
Abstract—This paper presents a novel system for the 3D capture of facial performance using standard ...
Capturing a realistic digital copy of a facial performance has high importance for film and televisi...
Capturing a realistic digital copy of a facial performance has high importance for film and televisi...
This thesis presents methods for the temporal alignment of 3D performance capture data. Discussion o...
Figure 1: Sample results of our tracking aproach with two wide baseline input cameras In this paper,...
In this paper, we present a method for detailed temporally consistent facial performance capture tha...
We present a novel technique for acquiring detailed facial geometry of a dynamic performance using e...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
This paper presents a novel 3D face shape capture device suitable for practical face recognition app...
Abstract. This paper addresses the problem of optimal alignment of non-rigid surfaces from multi-vie...
Figure 1: High-quality facial performance capture for two actors. The resulting meshes are in full v...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...
This paper presents a novel dense motion capture technique which creates a temporally consistent mes...