By Suri J., Farag A. (eds.)
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Extra resources for Deformable models. Biomedical and clinical applications
Therefore, the software that accompanies this article includes our implementation of the error free version but the results of executing that implementation will not be included in this paper. 3.
Since medical imagery is of three or four dimensions, it is important in the medical arena for a distance transform algorithm to generalize to dimensions higher than two. Another issue that arises when dealing with medical images is that of anisotropic sampling. Medical images are typically acquired as three-dimensional volumes of data (stacks of slices) with the sampling within each plane or slice at a higher rate than the sampling across slices. 0 mm). Distance transform algorithms are, like most other computationally intensive algorithms, of interest in and by themselves and have been the subject of at least one PhD dissertation .
SIMULATING BACTERIAL BIOFILMS 29 12. Chopp DL, Sukumar N. 2003. Fatigue crack propagation of multiple coplanar cracks with the coupled extended finite element/fast marching method. Int J Eng Sci 41(8):845–869. 13. Costerton JW, Lewandowski Z, Caldwell DE, Korber DR, Lappin-Scott HM. 1995. Microbial biofilms. Annu Rev Microbiol 49:711–745. 14. Costerton JW, Stewart PS, Greenberg EP. 1999. Bacterial biofilms: A common cause of persistent infections. Science 284:1318–1322. 15. Davies DG, Parsek MR, Pearson JP, Iglewski BH, Costerton JW, Greenberg EP.
Deformable models. Biomedical and clinical applications by Suri J., Farag A. (eds.)