DocumentCode :
83868
Title :
Symmetric Fast Marching Schemes for Better Numerical Isotropy
Author :
Appia, Vikram ; Yezzi, Anthony
Author_Institution :
Imaging Technol. Lab., Texas Instrum., Dallas, TX, USA
Volume :
35
Issue :
9
fYear :
2013
fDate :
Sept. 2013
Firstpage :
2298
Lastpage :
2304
Abstract :
Existing fast marching methods solve the Eikonal equation using a continuous (first-order) model to estimate the accumulated cost, but a discontinuous (zero-order) model for the traveling cost at each grid point. As a result the estimate of the accumulated cost (calculated numerically) at a given point will vary based on the direction of the arriving front, introducing an anisotropy into the discrete algorithm even though the continuous partial differential equation (PDE) is itself isotropic. To remove this anisotropy, we propose two very different schemes. In the first model, we utilize a continuous interpolation of the traveling cost, which is not biased by the direction of the propagating front. In the second model, we upsample the traveling cost on a higher resolution grid to overcome the directional bias. We show the significance of removing the directional bias in the computation of the cost in some applications of the fast marching method, demonstrating that both methods make the discrete implementation more isotropic, in accordance with the underlying continuous PDE.
Keywords :
interpolation; partial differential equations; Eikonal equation; PDE; continuous interpolation; continuous model; continuous partial differential equation; directional bias; discontinuous model; discrete algorithm; first-order model; numerical isotropy; symmetric fast marching scheme; traveling cost; zero-order model; Accuracy; Anisotropic magnetoresistance; Cost function; Equations; Interpolation; Mathematical model; Numerical models; Eikonal equation; FMM; Fast marching methods; global minimal path; isotropic fast marching; segmentation;
fLanguage :
English
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher :
ieee
ISSN :
0162-8828
Type :
jour
DOI :
10.1109/TPAMI.2013.52
Filename :
6475944
Link To Document :
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