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@article{IJAMCS_2008_18_1_a7, author = {Smereka, M. and Dul\k{e}ba, I.}, title = {Circular object detection using a modified {Hough} transform}, journal = {International Journal of Applied Mathematics and Computer Science}, pages = {85--91}, publisher = {mathdoc}, volume = {18}, number = {1}, year = {2008}, language = {en}, url = {http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_1_a7/} }
TY - JOUR AU - Smereka, M. AU - Dulęba, I. TI - Circular object detection using a modified Hough transform JO - International Journal of Applied Mathematics and Computer Science PY - 2008 SP - 85 EP - 91 VL - 18 IS - 1 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_1_a7/ LA - en ID - IJAMCS_2008_18_1_a7 ER -
%0 Journal Article %A Smereka, M. %A Dulęba, I. %T Circular object detection using a modified Hough transform %J International Journal of Applied Mathematics and Computer Science %D 2008 %P 85-91 %V 18 %N 1 %I mathdoc %U http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_1_a7/ %G en %F IJAMCS_2008_18_1_a7
Smereka, M.; Dulęba, I. Circular object detection using a modified Hough transform. International Journal of Applied Mathematics and Computer Science, Tome 18 (2008) no. 1, pp. 85-91. http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_1_a7/
[1] Atherton T. J. and Kerbyson D. J. (1993). The coherent circle Hough transform, Proceedings of the British Machine Vision Conference, Guildford, UK, pp. 269-278.
[2] Atherton T. J. and Kerbyson D. J. (1993). Using phase to represent radius in the coherent circle Hough transform, IEE Coloquium on the Hough Transform 5: 1-4.
[3] Atherton T. J. and Kerbyson D. J. (1999). Size invariant circle detection, Image and Vision Computing 17(11):795-803.
[4] Atiquzzaman M. (1999). Coarse-to-fine search technique to detect circles in images, International Journal of Advanced Manufacture Technologies 15(2): 96-102.
[5] Chan T. F. and Vese L. A. (2001). Active contours without edges, IEEE Transactions on Image Processing 10(2): 266-277.
[6] Duda R. O. and Hart P. E. (1972). Use of the Hough transform to detect lines and curves in pictures, Communications of the ACM 15(1): 11-15.
[7] Elder J. H. and Zucker S.W. (1996). Computing contour closure, Proceedings of the 4-th European Conference on Computer Vision- Volume I, Cambridge, UK, 1, 399-412.
[8] Fitzgibbon A., Pilu M. and Fisher R. B. (1999). Direct least square fitting of ellipses, IEEE Transactions on Pattern Analysis and Machine Inteligence 21(5): 477-480.
[9] Gerig G. and Klein F. (1986). Fast contour identification through efficient Hough transform and simplified interpretation strategy, Proceedings of the International Joint Conference on Pattern Recognition, Paris, France, pp. 498-500.
[10] Glab G., Florczak K., Jaronski J., and Licznerski T. (2001). Gynecological Cyto-diagnosis in Phase Contrast Microscopy, Blackhorse, Warsaw (in Polish).
[11] Guil N. and Zapata E. L. (1997). Low order circle and ellipse Hough transform, Journal of Pattern Recognition 30(10): 1729-1744.
[12] Hough P. V. C. (1962). Methods and means for recognizing complex patterns, U.S. Patent 3; 069; 654.
[13] Kavianpour A., Shoari S. and Bagherzadeh N. (1994). A new approach for circle detection on multiprocessors, Journal of Parallel and Distributed Computing 20(2): 256-260.
[14] Kimme C., Ballard D. and Sklansky J. (1975). Finding circles by an array of accumulators, Communitations of the ACM 18(2): 120-122.
[15] McLaughlin R. A. and Alder M. D. (1998). Technical report-The Hough transform versus the upwrite, IEEE Transactions on Pattern Analysis and Machine Intelligence 20(4): 396-400.
[16] Minor L. G. and Sklansky J. (1981). Detection and segmentation of blobs in infrared images, IEEE Transactions on Systems, Man, and Cybernetics 11(3): 194-201.
[17] Peura M. and Iivarinen J. (1997). Efficiency of simple shape descriptors, Aspects of Visual Form, Proceedings of the 3-rd International Workshop on Visual Forum, Capri, Italy, pp. 443-451.
[18] Ray N., Acton S. T. and Ley K. F. (2002). Tracking leukocytes in vivo with shape and size constrained active contours, IEEE Transactions on Medical Imaging 21(10): 1222-1235.
[19] Rosin P. (1996). Assessing error of fit functions for ellipses, Graphical Models and Image Processing 58(5): 494-502.
[20] Rosin P. (2000). Measuring shape: Ellipticity, rectangularity, and triangularity, Proceedings of the 15-th International Conference on Pattern Recognition, Barcelona, Spain, pp. 1952-1955.
[21] Ross K. F. A. (1967). Phase Contrast and Interference Microscopy for Cell Biologists, Edward Arnold Publishers, London.
[22] Shashua A. and Ullman S. (1991). Grouping contours by iterated pairing network, Neural Info 3: 335-341.
[23] Smereka M. (2003). Nuclei recognition in phase contrast microscopy images, Proceedings of the 3-rd International Conference on Computer Recognition Systems KOSYR, Mitków, Poland, pp. 35-40.
[24] World Health Organization. (1988). Cytological Screening in the Control of Cervical Cancer: Technical Guidelines, World Health Organization, Geneva.
[25] Zhu Q., Payne M. and Riordan V. (1996). Edge linking by a directional potential functions, Image and Vision Computing 14(1): 59-70.