| 2008 |
| 29 | EE | Rolf Lakämper,
Marc Sobel:
Correspondences between parts of shapes with particle filters.
CVPR 2008 |
| 28 | EE | Nagesh Adluru,
Longin Jan Latecki,
Marc Sobel,
Rolf Lakämper:
Merging maps of multiple robots.
ICPR 2008: 1-4 |
| 27 | EE | Rolf Lakämper,
Shusha Li,
Marc Sobel:
Correspondences of point sets using Particle Filters.
ICPR 2008: 1-5 |
| 26 | EE | Rolf Lakämper,
Nagesh Adluru:
Improving sparse laser scan alignment with Virtual Scans.
IROS 2008: 2915-2921 |
| 25 | EE | Rolf Lakämper,
JingTing Zeng:
A Context Dependent Distance Measure for Shape Clustering.
ISVC (2) 2008: 145-156 |
| 24 | EE | JingTing Zeng,
Rolf Lakämper,
XingWei Yang,
Xin Li:
2D Shape Decomposition Based on Combined Skeleton-Boundary Features.
ISVC (2) 2008: 682-691 |
| 2007 |
| 23 | EE | Nagesh Adluru,
Longin Jan Latecki,
Rolf Lakämper,
Thomas Young,
Xiang Bai,
Ari D. Gross:
Contour Grouping Based on Local Symmetry.
ICCV 2007: 1-8 |
| 22 | EE | Rolf Lakämper,
Nagesh Adluru,
Longin Jan Latecki,
Raj Madhavan:
Multi robot mapping using force field simulation.
J. Field Robotics 24(8-9): 747-762 (2007) |
| 2006 |
| 21 | EE | Rolf Lakämper,
Longin Jan Latecki:
Using Extended EM to Segment Planar Structures in 3D.
ICPR (3) 2006: 1077-1082 |
| 20 | | Rolf Lakämper,
Longin Jan Latecki:
Extended EM for Planar Approximation of 3D Data.
ICRA 2006: 1173-1179 |
| 19 | | Longin Jan Latecki,
Rolf Lakämper:
Polygonal Approximation of Laser Range Data based on Perceptual Grouping and EM.
ICRA 2006: 790-796 |
| 18 | EE | Longin Jan Latecki,
Rolf Lakämper,
Marc Sobel:
Polygonal Approximation of Point Sets.
IWCIA 2006: 159-173 |
| 17 | EE | Longin Jan Latecki,
Marc Sobel,
Rolf Lakämper:
New EM derived from Kullback-Leibler divergence.
KDD 2006: 267-276 |
| 2005 |
| 16 | EE | Rolf Lakämper,
Longin Jan Latecki,
Xinyu Sun,
Diedrich Wolter:
Geometric Robot Mapping.
DGCI 2005: 11-22 |
| 15 | EE | Longin Jan Latecki,
Vasileios Megalooikonomou,
Qiang Wang,
Rolf Lakämper,
Chotirat (Ann) Ratanamahatana,
Eamonn J. Keogh:
Partial Elastic Matching of Time Series.
ICDM 2005: 701-704 |
| 14 | EE | Longin Jan Latecki,
Vasilis Megalooikonomou,
Qiang Wang,
Rolf Lakämper,
Chotirat (Ann) Ratanamahatana,
Eamonn J. Keogh:
Elastic Partial Matching of Time Series.
PKDD 2005: 577-584 |
| 13 | EE | Longin Jan Latecki,
Rolf Lakämper,
Diedrich Wolter:
Optimal partial shape similarity.
Image Vision Comput. 23(2): 227-236 (2005) |
| 2004 |
| 12 | EE | Diedrich Wolter,
Longin Jan Latecki,
Rolf Lakämper,
Xinyu Sun:
Shape-Based Robot Mapping.
KI 2004: 439-452 |
| 2003 |
| 11 | EE | Longin Jan Latecki,
Rolf Lakämper,
Diedrich Wolter:
Shape Similarity and Visual Parts.
DGCI 2003: 34-51 |
| 2002 |
| 10 | EE | Longin Jan Latecki,
Rolf Lakämper:
Application of planar shape comparison to object retrieval in image databases.
Pattern Recognition 35(1): 15-29 (2002) |
| 2000 |
| 9 | EE | Longin Jan Latecki,
Rolf Lakämper,
Ulrich Eckhardt:
Shape Descriptors for Non-Rigid Shapes with a Single Closed Contour.
CVPR 2000: 1424-1429 |
| 8 | EE | Longin Jan Latecki,
Rolf Lakämper:
Shape Similarity Measure Based on Correspondence of Visual Parts.
IEEE Trans. Pattern Anal. Mach. Intell. 22(10): 1185-1190 (2000) |
| 1999 |
| 7 | EE | Longin Jan Latecki,
Rolf Lakämper:
Polygon Evolution by Vertex Deletion.
Scale-Space 1999: 398-409 |
| 6 | | Longin Jan Latecki,
Rolf Lakämper:
Shape Description and Search for Similar Objects in Image Databases.
State-of-the-Art in Content-Based Image and Video Retrieval 1999: 69-95 |
| 5 | EE | Longin Jan Latecki,
Rolf Lakämper:
Contour-Based Shape Similarity.
VISUAL 1999: 617-624 |
| 4 | EE | Longin Jan Latecki,
Rolf Lakämper:
Convexity Rule for Shape Decomposition Based on Discrete Contour Evolution.
Computer Vision and Image Understanding 73(3): 441-454 (1999) |
| 1998 |
| 3 | | Longin Jan Latecki,
Rolf Lakämper:
Shape Decomposition and Shape Similarity Measure.
DAGM-Symposium 1998: 367-376 |
| 2 | | Longin Jan Latecki,
Rolf Lakämper:
Discrete Approach to Curve Evolution.
DAGM-Symposium 1998: 85-92 |
| 1997 |
| 1 | | Rolf Lakämper,
Fritz Seytter:
Manipulation objektbasiert codierter Bilder als Anwendungsbeispiel neuer Videostandards.
DAGM-Symposium 1997: 427-434 |