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Extraction of Airways From CT (EXACT'09)
284
Zitationen
30
Autoren
2012
Jahr
Abstract
This paper describes a framework for establishing a reference airway tree segmentation, which was used to quantitatively evaluate fifteen different airway tree extraction algorithms in a standardized manner. Because of the sheer difficulty involved in manually constructing a complete reference standard from scratch, we propose to construct the reference using results from all algorithms that are to be evaluated. We start by subdividing each segmented airway tree into its individual branch segments. Each branch segment is then visually scored by trained observers to determine whether or not it is a correctly segmented part of the airway tree. Finally, the reference airway trees are constructed by taking the union of all correctly extracted branch segments. Fifteen airway tree extraction algorithms from different research groups are evaluated on a diverse set of twenty chest computed tomography (CT) scans of subjects ranging from healthy volunteers to patients with severe pathologies, scanned at different sites, with different CT scanner brands, models, and scanning protocols. Three performance measures covering different aspects of segmentation quality were computed for all participating algorithms. Results from the evaluation showed that no single algorithm could extract more than an average of 74% of the total length of all branches in the reference standard, indicating substantial differences between the algorithms. A fusion scheme that obtained superior results is presented, demonstrating that there is complementary information provided by the different algorithms and there is still room for further improvements in airway segmentation algorithms.
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Autoren
- Pechin Lo
- Bram van Ginneken
- Joseph M. Reinhardt
- Tarunashree Yavarna
- Pim A. de Jong
- Benjamin Irving
- Catalin Fetita
- Margarete Ortner
- Rômulo Pinho
- Jan Sijbers
- Marco Feuerstein
- Anna Fabijańska
- Christian Bauer
- Reinhard Beichel
- Carlos S. Mendoza
- Rafael Wiemker
- Jaesung Lee
- Anthony P. Reeves
- Silvia Born
- Oliver Weinheimer
- Eva M. van Rikxoort
- Juerg Tschirren
- Ken Mori
- Benjamin L. Odry
- David P. Naidich
- Ieneke C. J. Hartmann
- Eric A. Hoffman
- Mathias Prokop
- Jesper Holst Pedersen
- Marleen de Bruijne
Institutionen
- University of Copenhagen(DK)
- University of California, Los Angeles(US)
- Radboud University Nijmegen(NL)
- Radboud University Medical Center(NL)
- University of Iowa(US)
- University Medical Center Utrecht(NL)
- University College London(GB)
- Centre National de la Recherche Scientifique(FR)
- Institut Mines-Télécom(FR)
- Institut Polytechnique de Paris(FR)
- Télécom SudParis(FR)
- Mathématiques Appliquées à Paris 5(FR)
- Centre de Recherche en Cancérologie de Lyon(FR)
- University of Antwerp(BE)
- Technical University of Munich(DE)
- Lodz University of Technology(PL)
- University of Łódź(PL)
- Graz University of Technology(AT)
- Universidad de Sevilla(ES)
- Philips (Finland)(FI)
- Philips (Germany)(DE)
- Cornell University(US)
- Leipzig University(DE)
- Johannes Gutenberg University Mainz(DE)
- Vida Diagnostics (United States)(US)
- Nagoya University(JP)
- Siemens (Germany)(DE)
- Siemens (United States)(US)
- Columbia University Irving Medical Center(US)
- New York University(US)
- Erasmus MC(NL)
- Rotterdam University of Applied Sciences(NL)
- Copenhagen University Hospital(DK)
- Rigshospitalet(DK)