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Comparison and evaluation of methods for liver segmentation from CT datasets. IEEE TRANSACTIONS ON MEDICAL IMAGING. 2009;28(8):1251-1265.
Techniques of Virtual Dissection of the Colon Based on Spiral CT Data. In: Neri E, Caramella D, Bartolozzi C, editors. Image Processing in Radiology. Berlin: Springer-Verlag; 2008. 2. p. 257-268p.
New advances for imaging laryngo / trachealstenosis by post processing of spiral-CT data. In: Hruby W, editor. Digital (r)evolution in radiology. Wien; New York: Springer-Verlag; 2006. 2. p. 297-308p.
Techniques in 3D Assessment of Tracheal-Stenosis by the Mean of Spiral Computed Tomography (S-CT) and Their Applications. In: Leondes CT, editor. Medical Imaging Systems Technology. Singapore: World Scientific; 2005. 6. p. 61-80p.
Liver segment approximation in CT data for surgical resection planning. In: Fitzpatrick J M, Sonka M, editors. Medical Imaging 2004: Image Processing. Bellingham; WashingtonScheele, J., Anatomical and atypical liver resection (2001) Chirurg, 72 (2), pp. 113-124;Couinaud, C., (1957) Le Foie - Etudes Anatomiques et Chirurgicales, , Masson, Paris;
Strunk, H., Stuckmann, G., Textor, J., Willinek, W., Limit: SPIE; 2004. 1. p. 1435-1446p.
3D cross section of the laryngotracheal tract. A new method for visualization and quantification of tracheal stenoses. RADIOLOGE. 2003;43(12):1056-1068.
3D cross section of the laryngotracheal tract. A new method for visualization and quantification of tracheal stenoses. RADIOLOGE. 2003;43(12):1056-1068.
Medical Image Processing, Surgical Planning, Image-Guided Therapy and Robotic Applications: Recent Developments for Radiology. EUROPEAN RADIOLOGY. 2002;12(1 Suppl):504.
Spiral-CT-based assessment of tracheal stenoses using 3-D-skeletonization. IEEE TRANSACTIONS ON MEDICAL IMAGING. 2002;21(3):263-273.
Virtual dissection and automated polyp detection of the colon based on spiral CT - Techniques and preliminary experience on a cadaveric phantom. EUROPEAN SURGERY - ACTA CHIRURGICA AUSTRIACA. 2002;34(2):143-149.
Virtual Dissection of the Colon. In: Kuba A, Máté E, Palágyi K, editors. Képfeldolgozók és Alakfelismerők III. Konfereciája. Szeged: NJSZT-KÉPAF; 2002. 1. p. 109-117p.
Virtual Dissection of the Colon. In: Caramella D, Bartolozzi C, editors. 3D Image Processing. New York: Springer-Verlag; 2002. 1. p. 197-209p.
Virtual dissection of the colon: technique and first experiments with artificial and cadaveric phantoms. In: Mun SKi, editor. Medical Imaging 2002: Visualization, Image-Guided Procedures, and Display. Bellingham; Washington: SPIE; 2002. 7. p. 713-721p.
A sequential 3D thinning algorithm and its medical applications. LECTURE NOTES IN COMPUTER SCIENCE. 2001;2082:409-415.
Virtual Dissection of the Colon Based on Helical CT Data - Can It Be Done? In: Lončarić S, Babic H, editors. Proceedings of the 2nd International Symposium on Image and Signal Processing and Analysis, ISPA 2001, Pula, Croatia. Zagreb: University of Zagreb; 2001. 2. p. 224-229p.
3D vékonyítás és alkalmazása vérerek és légutak átmérőjének meghatározására. In: Sziranyi T, editor. A Képfeldolgozók és Alakfelismerők Társaságának konferenciája - KÉPAF 2000. Noszvaj: NJSZT; 2000. 9. p. 95-100p.
New advances for imaging of laryngotracheal stenosis by post processing of spiral-CT data. In: Hruby W, editor. Digital (R)Evolution in Radiology. Berlin; Heidelberg; New York; London; Paris; Tokyo: Springer-Verlag; 2000. 2. p. 275-285p.
3D thinning and its applications to medical image processing. TASK QUARTERLY. 1999;3(4):397-408.