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The 2nd Canadian Conference on Computer and Robot Vision (CRV'05)
A Linear Euclidean Distance Transform Algorithm Based on the Linear-Time Legendre Transform
The University of Victoria, Victoria, British Columbia, Canada
May 09-May 11
ISBN: 0-7695-2319-6
| ASCII Text | x | ||
| Yves Lucet, "A Linear Euclidean Distance Transform Algorithm Based on the Linear-Time Legendre Transform," Computer and Robot Vision, Canadian Conference, pp. 262-267, The 2nd Canadian Conference on Computer and Robot Vision (CRV'05), 2005. | |||
| BibTex | x | ||
| @article{ 10.1109/CRV.2005.7, author = {Yves Lucet}, title = {A Linear Euclidean Distance Transform Algorithm Based on the Linear-Time Legendre Transform}, journal ={Computer and Robot Vision, Canadian Conference}, volume = {0}, year = {2005}, isbn = {0-7695-2319-6}, pages = {262-267}, doi = {http://doi.ieeecomputersociety.org/10.1109/CRV.2005.7}, publisher = {IEEE Computer Society}, address = {Los Alamitos, CA, USA}, } | |||
| RefWorks Procite/RefMan/Endnote | x | ||
| TY - CONF JO - Computer and Robot Vision, Canadian Conference TI - A Linear Euclidean Distance Transform Algorithm Based on the Linear-Time Legendre Transform SN - 0-7695-2319-6 SP262 EP267 A1 - Yves Lucet, PY - 2005 KW - null VL - 0 JA - Computer and Robot Vision, Canadian Conference ER - | |||
DOI Bookmark: http://doi.ieeecomputersociety.org/10.1109/CRV.2005.7
We introduce a new exact Euclidean distance transform algorithm for binary images based on the Linear-time Legendre Transform algorithm. The three-step algorithm uses dimension reduction and convex analysis results on the Legendre-Fenchel transform to achieve linear-time complexity. First, computation on a grid (the image) is reduced to computation on a line, then the convex envelope is computed, and finally the squared Euclidean distance transform is obtained. Examples and an extension to non-binary images are provided.
Citation:
Yves Lucet, "A Linear Euclidean Distance Transform Algorithm Based on the Linear-Time Legendre Transform," crv, pp.262-267, The 2nd Canadian Conference on Computer and Robot Vision (CRV'05), 2005
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