A continuity equation based optical flow method for cardiac motion correction in 3D PET data

Dawood M, Brune C, Jiang X, Büther F, Burger M, Schober O, Schäfers M, Schäfers K

Forschungsartikel in Sammelband (Konferenz) | Peer reviewed

Zusammenfassung

Cardiac Motion artifacts in PET are a well known problem. The heart undergoes two types of motion, the motion due to respiratory displacement and the motion due to cardiac contraction. These movements lead to blurring of data and to inaccuracies in the quantification. In this study a continuity equation based optical flow method is presented and results on 3D PET patient datasets for cardiac motion correction are presented. The method was evaluated with respect to three criteria: correlation between the images, myocardial thickness and the blood pool activity curves. The results showed that the method was successful in motion correcting the data with high precision.

Details zur Publikation

Herausgeber*innenHongen Liao, P.J. Eddie Edwards, Xiaochuan Pan
BuchtitelMedical Imaging and Augmented Reality: 5th International Workshop, MIAR 2010, Beijing, China, September 19-20, 2010, Proceedings (Lecture Notes in ... Vision, Pattern Recognition, and Graphics)
Seitenbereich88-97
VerlagSpringer
ErscheinungsortBerlin Heidelberg
StatusVeröffentlicht
Veröffentlichungsjahr2010
Sprache, in der die Publikation verfasst istEnglisch
KonferenzProc. of MIAR, Peking, undefined
ISBN978-3642156984
DOI10.1007/978-3-642-15699-1_10
Link zum Volltexthttp://cvpr.uni-muenster.de/organisation/dawoods/MICCAI2010.pdf
StichwörterMotion correction; Optical Flow; PET; CT; Mass Conservation

Autor*innen der Universität Münster

Brune, Christoph
Institut für Analysis und Numerik
Burger, Martin
Professur für Angewandte Mathematik, insbesondere Numerik (Prof. Burger)
Jiang, Xiaoyi
Professur für Praktische Informatik (Prof. Jiang)
Schäfers, Klaus
Klinik für Nuklearmedizin
Schäfers, Michael
Klinik für Nuklearmedizin
European Institute of Molecular Imaging (EIMI)
Schober, Otmar
Klinik für Nuklearmedizin