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abdominal aortic aneurysms in a defined popula- tion. The British Journal of Surgery, 102(8):907– 915, July2015. [8] z. C¸ic¸ek, A. Abdulkadir, S. S. Lienkamp, T. Brox, andO.Ronneberger.3dU-Net: LearningDenseVol- umetric Segmentation from Sparse Annotation. In Medical Image Computing and Computer-Assisted Intervention – MICCAI 2016, Lecture Notes in ComputerScience,pages424–432.Springer,Cham, 2016. [9] F. Isensee,P.Kickingereder,W.Wick,M.Bendszus, and K. H. Maier-Hein. Brain tumor segmentation and radiomics survival prediction: Contribution to the brats 2017 challenge. In A. Crimi, S. Bakas, H. Kuijf, B. Menze, and M. Reyes, editors, Brain- lesion: Glioma,MultipleSclerosis,StrokeandTrau- matic Brain Injuries, pages 287–297, Cham, 2018. Springer InternationalPublishing. [10] F. Isensee, J. Petersen, S. A. A. Kohl, P. F. Ja¨ger, and K. H. Maier-Hein. nnU-Net: Breaking the Spell on Successful Medical Image Segmentation. arXiv:1904.08128[cs], 2019. arXiv: 1904.08128. [11] K. C. Kent. Abdominal Aortic Aneurysms. New England Journal of Medicine, 371(22):2101–2108, Nov.2014. [12] A. Klein, J. A. van der Vliet, L. J. Oostveen, Y. Hoogeveen, L. J. S. Kool, W. K. J. Renema, and C. H. Slump. Automatic segmentation of the wire frame of stent grafts from ct data. Medical image analysis, 161:127–39,2012. [13] T.Kova´cs,P.Cattin,H.Alkadhi,S.Wildermuth,and G. Sze´kely. Automatic Segmentation of the Vessel Lumenfrom3dCTAImagesofAorticDissection. In H. Handels, J. Ehrhardt, A. Horsch, H.-P. Meinzer, and T. Tolxdorff, editors, Bildverarbeitung fu¨r die Medizin 2006, Informatik aktuell, pages 161–165, Berlin,Heidelberg,2006.Springer. [14] F. Lalys, V. Yan, A. Kaladji, A. Lucas, and S. Esneault. Generic thrombus segmentation from pre- and post-operative cta. International Jour- nal of Computer Assisted Radiology and Surgery, 12(9):1501–1510,2017. [15] T. C. Lee, R. L. Kashyap, and C. N. Chu. Building SkeletonModelsvia3-DMedialSurfaceAxisThin- ning Algorithms. CVGIP: Graphical Models and ImageProcessing, 56(6):462–478,1994. [16] J.Li,L.Cao,Y.Ge,C.Wang,B.Meng,andW.Guo. Multi-taskdeepconvolutionalneuralnetworkforthe segmentation of type B aortic dissection. CoRR, abs/1806.09860,2018. [17] K. Lo´pez-Linares, I. Garcı´a, A. Garcı´a-Familiar, I. Macı´a, and M. A´. G. Ballester. 3d convolutional neural network for abdominal aortic aneurysm seg- mentation. CoRR, abs/1903.00879, 2019. [18] M.Malina. Reinterventionsafteropenandendovas- cular AAA repair. The Journal of Cardiovascular Surgery, 56(2):257–268,2015. [19] S. Moccia, E. De Momi, S. El Hadji, and L. S. Mat- tos. Blood vessel segmentation algorithms — Re- view of methods, datasets and evaluation metrics. Computer Methods and Programs in Biomedicine, 158:71–91, 2018. [20] J. Nunez-Iglesias, A. J. Blanch, O. Looker, M. W. Dixon, and L. Tilley. A new Python library to anal- yse skeleton images confirms malaria parasite re- modelling of the red blood cell membrane skeleton. PeerJ, 6:e4312,Feb.2018. [21] O. Ronneberger, P. Fischer, and T. Brox. U-Net: Convolutional Networks for Biomedical Image Seg- mentation. SpringerInternationalPublishing,Cham, 2015. [22] A. M. Rozenblit, M. Patlas, A. T. Rosenbaum, T. Okhi, F. J. Veith, M. P. Laks, and Z. J. Ricci. De- tection of Endoleaks after Endovascular Repair of AbdominalAorticAneurysm: ValueofUnenhanced and Delayed Helical CT Acquisitions. Radiology, 227(2):426–433,May2003. [23] T. Siriapisith, W. Kusakunniran, and P. Had- dawy. Outer wall segmentation of abdominal aortic aneurysm by variable neighborhood search through intensity and gradient spaces. Journal of Digital Imaging, 31,2018. [24] R. Winder, Z. Sun, B. Kelly, P. Ellis, and D. Hirst. Abdominalaorticaneurysmandstentgraftphantom manufacturedbymedical rapidprototyping. Journal of medical engineering & technology, 26(2):75–78, 2002. [25] P. A. Yushkevich, Yang Gao, and G. Gerig. ITK- SNAP: An interactive tool for semi-automatic seg- mentation of multi-modality biomedical images. Conference proceedings : ... Annual Interna- tional Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference, 2016:3342–3345,2016. [26] J.-Q. Zheng, X.-Y. Zhou, Q.-B. Li, C. Riga, and G.-Z. Yang. Abdominal Aortic Aneurysm Segmen- tation with a Small Number of Training Subjects. arXiv:1804.02943[cs], 2018. arXiv: 1804.02943. 107
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Joint Austrian Computer Vision and Robotics Workshop 2020
Title
Joint Austrian Computer Vision and Robotics Workshop 2020
Editor
Graz University of Technology
Location
Graz
Date
2020
Language
English
License
CC BY 4.0
ISBN
978-3-85125-752-6
Size
21.0 x 29.7 cm
Pages
188
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Joint Austrian Computer Vision and Robotics Workshop 2020