Difference between revisions of "Publications/crozet.14.icip.inc"
From LRDE
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− | === Fig.8 === |
+ | === Fig. 8 === |
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== Images == |
== Images == |
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Images used for the benchmarks: [https://www.dropbox.com/s/ff3gfhiivalcjyz/images.tar.bz2] |
Images used for the benchmarks: [https://www.dropbox.com/s/ff3gfhiivalcjyz/images.tar.bz2] |
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− | == Code == |
+ | == Source Code == |
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* Code of the serial version: [https://www.dropbox.com/s/w7rje3w4wq6pi4d/serial.tar.bz2] |
* Code of the serial version: [https://www.dropbox.com/s/w7rje3w4wq6pi4d/serial.tar.bz2] |
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* Code of the parallel version: [https://www.dropbox.com/s/ytslb3d73jm5owa/parallel.tar.bz2] |
* Code of the parallel version: [https://www.dropbox.com/s/ytslb3d73jm5owa/parallel.tar.bz2] |
Revision as of 12:52, 18 February 2014
Figures
Fig. 1
Fig. 1: Sample uses of the tree of shapes.
Fig. 2
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(a) Image | (b) Tree of shapes |
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Fig. 2: An image (a) and its tree of shapes (b). The propagation of the level line λ ended, meaning that the nodes O and A have already been visited. The hierarchical queue contains the interior contour of B and C. Thus it can be partitioned in two sets S⁺λ</math> = ∂B and S⁻λ = ∂C. The propagation can proceed on both parts in parallel.
Fig. 4
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(a) Input | (b) Subdivided | (c) Immersed |
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Fig. 4: (a) is the input image. (b) is the result of the subdivision. (c) is the result of the immersion into the Khalimsky grid. 0-faces are represented by dots, 1-faces by segments and 2-faces by squares.
Fig. 8
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(a) Original image | (b) Re-valued image |
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Fig. 8: The original image (a) and the associated F^{ord} (b); the max-tree of (b) coincides with the tree of shapes of (a).
Fig. 10
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Fig. 10: Computation times (in seconds) on a classical image test set of the following algorithms: FLLT [3], FLST [23], Géraud et al. [2], and this paper proposal.
Images
Images used for the benchmarks: [1]