Andrei Sharf

Senior Academic

Space-time surface reconstruction using incompressible flow

Andrei Sharf, Dan A. Alcantara, Thomas Lewiner, Chen Greif, Alla Sheffer, Nina Amenta, Daniel Cohen-Or

We introduce a volumetric space-time technique for the reconstruction of moving and deforming objects from point data. The output of our method is a four-dimensional space-time solid, made up of spatial slices, each of which is a three-dimensional solid bounded by a watertight manifold. The motion of the object is described as an incompressible flow of material through time. We optimize the flow so that the distance material moves from one time frame to the next is bounded, the density of material remains constant, and the object remains compact. This formulation overcomes deficiencies in the acquired data, such as persistent occlusions, errors, and missing frames. We demonstrate the performance of our flowbased technique by reconstructing coherent sequences of watertight models from incomplete scanner data.

Publication language English
Publication status Published - 01.01.2008
110

Keywords

Reconstruction
Space-time
Volumetric techniques

ASJC Scopus subject areas

Computer Graphics and Computer-Aided Design
Computer Vision and Pattern Recognition
Software
Access to Document
10.1145/1457515.1409063
Other files and links
Link to publication in Scopus