2008 |
11 | EE | Guoning Chen,
Konstantin Mischaikow,
Robert S. Laramee,
Eugene Zhang:
Efficient Morse Decompositions of Vector Fields.
IEEE Trans. Vis. Comput. Graph. 14(4): 848-862 (2008) |
10 | EE | Marcio Gameiro,
Jean-Philippe Lessard,
Konstantin Mischaikow:
Validated continuation over large parameter ranges for equilibria of PDEs.
Mathematics and Computers in Simulation 79(4): 1368-1382 (2008) |
2007 |
9 | EE | Stanislaus Maier-Paape,
Konstantin Mischaikow,
Thomas Wanner:
Structure of the Attractor of the Cahn-hilliard equation on a Square.
I. J. Bifurcation and Chaos 17(4): 1221-1263 (2007) |
8 | EE | Guoning Chen,
Konstantin Mischaikow,
Robert S. Laramee,
Pawel Pilarczyk,
Eugene Zhang:
Vector Field Editing and Periodic Orbit Extraction Using Morse Decomposition.
IEEE Trans. Vis. Comput. Graph. 13(4): 769-785 (2007) |
2006 |
7 | EE | Eugene Zhang,
Konstantin Mischaikow,
Greg Turk:
Vector field design on surfaces.
ACM Trans. Graph. 25(4): 1294-1326 (2006) |
6 | EE | Marc Niethammer,
William D. Kalies,
Konstantin Mischaikow,
Allen Tannenbaum:
On the detection of simple points in higher dimensions using cubical homology.
IEEE Transactions on Image Processing 15(8): 2462-2469 (2006) |
2005 |
5 | EE | Eugene Zhang,
Konstantin Mischaikow,
Greg Turk:
Feature-based surface parameterization and texture mapping.
ACM Trans. Graph. 24(1): 1-27 (2005) |
4 | EE | Konstantin Mischaikow,
Marian Mrozek,
Pawel Pilarczyk:
Graph Approach to the Computation of the Homology of Continuous Maps.
Foundations of Computational Mathematics 5(2): 199-229 (2005) |
3 | EE | William D. Kalies,
Konstantin Mischaikow,
R. C. A. M. VanderVorst:
An Algorithmic Approach to Chain Recurrence.
Foundations of Computational Mathematics 5(4): 409-449 (2005) |
2002 |
2 | | Konstantin Mischaikow,
Pawel Pilarczyk,
William D. Kalies,
Marc Niethammer,
Andrew Stein,
Allen Tannenbaum:
Analysis of blood vessel topology by cubical homology.
ICIP (2) 2002: 969-972 |
1998 |
1 | | Konstantin Mischaikow,
Marian Mrozek:
Chaos in the Lorenz equations: A computer assisted proof. Part II: Details.
Math. Comput. 67(223): 1023-1046 (1998) |