Atlases of cardiac fiber differential geometry

Emmanuel Piuze, Herve Lombaert, Jon Sporring, Gustav J. Strijkers, Adrianus J. Bakermans, Kaleem Siddiqi

8 Citationer (Scopus)

Abstract

Studies of intra-species cardiac fiber variability tend to focus on first-order measures such as local fiber orientation. Recent work has shown that myofibers bundle locally into a particular type of minimal surface, the generalized helicoid model (GHM), which is described by three biologically meaningful curvature parameters. In order to allow intra-species comparisons, a typical strategy is to divide the parameters of the generalized helicoid by heart diameter. This normalization does not compensate for variability in myocardial shape between subjects and makes interpretation of intra-species results difficult. This paper proposes to use an atlas of rat and dog myocardium, obtained using diffeomorphic groupwise Log-demons, to register all hearts in a common reference shape to perform the normalization. In this common space the GHM is estimated for all hearts and compared using an improved fitting method. Our results demonstrate improved consistency between GHM curvatures within a species and support a direct relation between myocardial shape and fiber curvature in the heart.

OriginalsprogEngelsk
TitelFunctional Imaging and Modeling of the Heart : 7th International Conference, FIMH 2013, London, UK, June 20-22, 2013. Proceedings
RedaktørerSébastien Ourselin, Daniel Rueckert, Nicolas Smith
Antal sider8
ForlagSpringer
Publikationsdato2013
Sider442-449
ISBN (Trykt)978-3-642-38898-9
ISBN (Elektronisk)978-3-642-38899-6
DOI
StatusUdgivet - 2013
Begivenhed7th International Conference on Functional Imaging and Modeling of the Heart - London, Storbritannien
Varighed: 20 jun. 201322 jun. 2013
Konferencens nummer: 7

Konference

Konference7th International Conference on Functional Imaging and Modeling of the Heart
Nummer7
Land/OmrådeStorbritannien
ByLondon
Periode20/06/201322/06/2013
NavnLecture notes in computer science
Vol/bind7945
ISSN0302-9743

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