{\rtf1\ansi\deff0\deftab360 {\fonttbl {\f0\fswiss\fcharset0 Arial} {\f1\froman\fcharset0 Times New Roman} {\f2\fswiss\fcharset0 Verdana} {\f3\froman\fcharset2 Symbol} } {\colortbl; \red0\green0\blue0; } {\info {\author Biblio 7.x}{\operator }{\title Biblio RTF Export}} \f1\fs24 \paperw11907\paperh16839 \pgncont\pgndec\pgnstarts1\pgnrestart Kohlberger, T, Schn\'f6rr, C, Bruhn, A and Weickert, J (2005). Domain decomposition for variational optical flow computation. IEEE Trans. Image Proc. 14 1125-1137\par \par Ruhnau, P, Kohlberger, T, Nobach, H and Schn\'f6rr, C (2005). Variational Optical Flow Estimation for Particle Image Velocimetry. Experiments in Fluids. 38 21--32\par \par Ruhnau, P, Kohlberger, T, Nobach, H and Schn\'f6rr, C (2005). Variational Optical Flow Estimation for Particle Image Velocimetry. Experiments in Fluids. 38 21?32\par \par Yuan, J, Schn\'f6rr, C, Kohlberger, T and Ruhnau, P (2004). Convex Set-Based Estimation of Image Flows. ICPR 2004 ? 17th Int. Conf. on Pattern Recognition. IEEE, Cambridge, UK. 1 124-127\par \par Kohlberger, T, Schn\'f6rr, C, Bruhn, A and Weickert, J (2004). Parallel Variational Motion Estimation by Domain Decomposition and Cluster Computing. Computer Vision ? ECCV 2004. Springer. 3024 205-216\par \par Ruhnau, P, Kohlberger, T, Nobach, H and Schn\'f6rr, C (2004). Variational Optical Flow Estimation for Particle Image Velocimetry. Proc. Lasermethoden in der Str\'f6mungsme\'dftechnik. Deutsche Gesellschaft f\'fcr Laser-Anemometrie GALA e.V., Karlsruhe\par \par Kohlberger, T, Schn\'f6rr, C, Bruhn, A and Weickert, J (2003). Domain Decomposition for Parallel Variational Optical Flow Computation. Pattern Recognition, Proc. 25th DAGM Symposium. Springer. 2781 196?203\par \par Kohlberger, T, Schn\'f6rr, C, Bruhn, A and Weickert, J (2003). Domain Decomposition For Variational Optical Flow Computation. Dept. Math. and Comp. Science, University of Mannheim, Germany\par \par Kohlberger, T, M\'e9min, E and Schn\'f6rr, C (2003). Variational Dense Motion Estimation Using the Helmholtz Decomposition. Scale Space Methods in Computer Vision. Springer. 2695 432?448\par \par }