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T. Yung Kong
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2010 – 2019
- 2016
- [j25]Krzysztof Chris Ciesielski, Gabor T. Herman, T. Yung Kong:
General Theory of Fuzzy Connectedness Segmentations. J. Math. Imaging Vis. 55(3): 304-342 (2016) - 2015
- [c10]Gabor T. Herman, T. Yung Kong, Krzysztof Chris Ciesielski:
Fuzzy Connectedness Segmentation: A Brief Presentation of the Literature. IWCIA 2015: 21-30 - 2014
- [c9]Lucas M. Oliveira, Gabor T. Herman, Tat Yung Kong, Paul Gottlieb, Al Katz:
Using a Topological Descriptor to Investigate Structures of Virus Particles. IWCIA 2014: 62-75 - 2012
- [j24]Gabor T. Herman, T. Yung Kong, Lucas M. Oliveira:
Tree representation of digital picture embeddings. J. Vis. Commun. Image Represent. 23(6): 883-891 (2012)
2000 – 2009
- 2008
- [j23]T. Yung Kong:
Minimal non-deletable sets and minimal non-codeletable sets in binary images. Theor. Comput. Sci. 406(1-2): 97-118 (2008) - 2007
- [j22]T. Yung Kong, Punam K. Saha, Azriel Rosenfeld:
Strongly normal sets of contractible tiles in N dimensions. Pattern Recognit. 40(2): 530-543 (2007) - 2006
- [c8]T. Yung Kong:
Minimal Non-simple and Minimal Non-cosimple Sets in Binary Images on Cell Complexes. DGCI 2006: 169-188 - [c7]Deniz Sariöz, T. Yung Kong, Gabor T. Herman:
History Trees as Descriptors of Macromolecular Structures. ISVC (1) 2006: 263-272 - 2005
- [j21]Bruno M. Carvalho, Gabor T. Herman, T. Yung Kong:
Simultaneous fuzzy segmentation of multiple objects. Discret. Appl. Math. 151(1-3): 55-77 (2005) - 2004
- [j20]Sébastien Fourey, Gabor T. Herman, T. Yung Kong, Azriel Rosenfeld:
Preface. Discret. Appl. Math. 139(1-3): 1-3 (2004) - [j19]Sébastien Fourey, T. Yung Kong, Gabor T. Herman:
Generic axiomatized digital surface-structures. Discret. Appl. Math. 139(1-3): 65-93 (2004) - [c6]T. Yung Kong, Chyi-Jou Gau:
Minimal Non-simple Sets in 4-Dimensional Binary Images with (8, 80)-Adjacency. IWCIA 2004: 318-333 - 2003
- [j18]Chyi-Jou Gau, T. Yung Kong:
Minimal non-simple sets in 4D binary images. Graph. Model. 65(1-3): 112-130 (2003) - [j17]Bruno M. Carvalho, Gabor T. Herman, T. Yung Kong:
Simultaneous Fuzzy Segmentation of Multiple Objects. Electron. Notes Discret. Math. 12: 3-22 (2003) - [j16]T. Yung Kong:
The Khalimsky topologies are precisely those simply connected topologies on Zn whose connected sets include all 2n-connected sets but no (3n-1)-disconnected sets. Theor. Comput. Sci. 305(1-3): 221-235 (2003) - 2002
- [j15]T. Yung Kong:
Topological adjacency relations on Zn. Theor. Comput. Sci. 283(1): 3-28 (2002) - [c5]Chyi-Jou Gau, T. Yung Kong:
4D Minimal Non-simple Sets. DGCI 2002: 81-91 - 2001
- [c4]Sébastien Fourey, T. Yung Kong, Gabor T. Herman:
Generic axiomatized digital surface-structures. IWCIA 2001: 73-92 - [c3]Punam K. Saha, T. Yung Kong, Azriel Rosenfeld:
Strongly normal sets of tiles in N dimensions. IWCIA 2001: 309-320 - [c2]Sébastien Fourey, Gabor T. Herman, T. Yung Kong:
Preface. IWCIA 2001: 430-431 - [e1]Sébastien Fourey, Gabor T. Herman, T. Yung Kong:
8th International Workshop on Combinatorial Image Analysis, IWCIA 2001, Philadelphia, PA, USA, August 23-24, 2001. Electronic Notes in Theoretical Computer Science 46, Elsevier 2001 [contents]
1990 – 1999
- 1999
- [j14]Chyi-Jou Gau, T. Yung Kong:
Minimal Nonsimple Sets of Voxels in Binary Images on A Face-Centered Cubic Grid. Int. J. Pattern Recognit. Artif. Intell. 13(4): 485-502 (1999) - 1998
- [j13]Azriel Rosenfeld, T. Yung Kong, Akira Nakamura:
Topology-Preserving Deformations of Two-Valued Digital Pictures. Graph. Model. Image Process. 60(1): 24-34 (1998) - [j12]T. Yung Kong, Gabor T. Herman:
On which grids can tomographic equivalence of binary pictures be characterized in terms of elementary switching operations? Int. J. Imaging Syst. Technol. 9(2-3): 118-125 (1998) - 1997
- [c1]T. Yung Kong:
Topology-Preserving Deletion of 1's from 2-, 3- and 4-Dimensional Binary Images. DGCI 1997: 3-18 - 1995
- [j11]T. Yung Kong:
On Topology Preservation in 2-D and 3-D Thinning. Int. J. Pattern Recognit. Artif. Intell. 9(5): 813-844 (1995) - 1992
- [j10]T. Yung Kong, Jayaram K. Udupa:
A justification of a fast surface tracking algorithm. CVGIP Graph. Model. Image Process. 54(2): 162-170 (1992) - 1991
- [j9]Azriel Rosenfeld, T. Yung Kong, Angela Y. Wu:
Digital surfaces. CVGIP Graph. Model. Image Process. 53(4): 305-312 (1991) - 1990
- [j8]T. Yung Kong, Azriel Rosenfeld:
If we use 4- or 8-connectedness for both the objects and the background, the Euler characteristics is not locally computable. Pattern Recognit. Lett. 11(4): 231-232 (1990)
1980 – 1989
- 1989
- [j7]T. Yung Kong:
A digital fundamental group. Comput. Graph. 13(2): 159-166 (1989) - [j6]T. Yung Kong, Azriel Rosenfeld:
Digital topology: Introduction and survey. Comput. Vis. Graph. Image Process. 48(3): 357-393 (1989) - 1988
- [j5]T. Yung Kong, David M. Mount, A. W. Roscoe:
The Decomposition of a Rectangle into Rectangles of Minimal Perimeter. SIAM J. Comput. 17(6): 1215-1231 (1988) - 1987
- [j4]T. Yung Kong, David M. Mount, Michael Werman:
The decomposition of a square into rectangles of minimal perimeter. Discret. Appl. Math. 16(3): 239-243 (1987) - 1986
- [j3]Michael Werman, Shmuel Peleg, Robert A. Melter, T. Yung Kong:
Bipartite Graph Matching for Points on a Line or a Circle. J. Algorithms 7(2): 277-284 (1986) - 1985
- [j2]T. Yung Kong, A. W. Roscoe:
Continuous analogs of axiomatized digital surfaces. Comput. Vis. Graph. Image Process. 29(1): 60-86 (1985) - [j1]T. Yung Kong, A. W. Roscoe:
A theory of binary digital pictures. Comput. Vis. Graph. Image Process. 32(2): 221-243 (1985)
Coauthor Index
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