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Multiple Aneurysms AnaTomy CHallenge 2018 (MATCH): Phase I: Segmentation

Berg, Philipp ; Voß, Samuel ; Saalfeld, Sylvia ; Janiga, Gábor ; Bergersen, Aslak W. ; Valen-Sendstad, Kristian ; Bruening, Jan ; Goubergrits, Leonid ; Spuler, Andreas ; Cancelliere, Nicole M. ; Steinman, David A. ; Pereira, Vitor M. ; Chiu, Tin Lok ; Tsang, Anderson Chun On ; Chung, Bong Jae ; Cebral, Juan R. ; Cito, Salvatore ; Pallarès, Jordi ; Copelli, Gabriele ; Csippa, Benjamin ; Paál, György ; Fujimura, Soichiro ; Takao, Hiroyuki ; Hodis, Simona ; Hille, Georg ; Karmonik, Christof ; Elias, Saba ; Kellermann, Kerstin ; Khan, Muhammad Owais ; Marsden, Alison L. ; Morales, Hernán G. ; Piskin, Senol ; Finol, Ender A. ; Pravdivtseva, Mariya ; Rajabzadeh-Oghaz, Hamidreza ; Paliwal, Nikhil ; Meng, Hui ; Seshadhri, Santhosh ; Howard, Matthew ; Shojima, Masaaki ; Sugiyama, Shin-ichiro ; Niizuma, Kuniyasu ; Sindeev, Sergey ; Frolov, Sergey ; Wagner, Thomas ; Brawanski, Alexander ; Qian, Yi ; Wu, Yu-An ; Carlson, Kent D. ; Dragomir-Daescu, Dan ; Beuing, Oliver



Zusammenfassung

Purpose-Advanced morphology analysis and image-based hemodynamic simulations are increasingly used to assess the rupture risk of intracranial aneurysms (IAs). However, the accuracy of those results strongly depends on the quality of the vessel wall segmentation. Methods-To evaluate state-of-the-art segmentation approaches, the Multiple Aneurysms AnaTomy CHallenge (MATCH) was announced. ...

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