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@comment{Bib-it,
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This file was created by Bib-it 1.4
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97 entries written
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}
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@INCOLLECTION{ABD12,
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author = {Alcantarilla, Pablo Fern{\'a}ndez and Bartoli, Adrien and Davison, Andrew J},
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title = {KAZE features},
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booktitle = {Computer Vision--ECCV 2012},
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year = {2012},
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pages = {214--227},
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publisher = {Springer}
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}
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@ARTICLE{ANB13,
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author = {Alcantarilla, Pablo F and Nuevo, Jes{\'u}s and Bartoli, Adrien},
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title = {Fast Explicit Diffusion for Accelerated Features in Nonlinear Scale Spaces},
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year = {2011},
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pages = {1281--1298},
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journal = {Trans. Pattern Anal. Machine Intell},
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volume = {34},
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number = {7}
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}
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@INPROCEEDINGS{Arandjelovic:2012:TTE:2354409.2355123,
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author = {Arandjelovic, Relja},
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title = {Three Things Everyone Should Know to Improve Object Retrieval},
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booktitle = {Proceedings of the 2012 IEEE Conference on Computer Vision and Pattern Recognition (CVPR)},
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series = {CVPR '12},
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year = {2012},
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isbn = {978-1-4673-1226-4},
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pages = {2911--2918},
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numpages = {8},
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url = {http://dl.acm.org/citation.cfm?id=2354409.2355123},
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acmid = {2355123},
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publisher = {IEEE Computer Society},
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address = {Washington, DC, USA},
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keywords = {Vectors,Visualization,Kernel,Standards,Support vector machines,Indexes,Euclidean distance},
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}
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@ARTICLE{BA83,
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author = {Burt, Peter J and Adelson, Edward H},
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title = {A multiresolution spline with application to image mosaics},
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journal = {ACM Transactions on Graphics (TOG)},
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volume = {2},
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number = {4},
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publisher = {ACM}
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}
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@ARTICLE{BL07,
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author = {Brown, Matthew and Lowe, David G},
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title = {Automatic panoramic image stitching using invariant features},
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year = {2007},
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journal = {International journal of computer vision},
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volume = {74},
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number = {1},
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publisher = {Springer}
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}
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@ARTICLE{BT96,
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author = {Birchfield, Stan and Tomasi, Carlo},
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title = {Depth discontinuities by pixel-to-pixel stereo},
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year = {1999},
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pages = {269--293},
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journal = {International Journal of Computer Vision},
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volume = {35},
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number = {3},
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publisher = {Springer}
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}
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@ARTICLE{BT98,
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author = {Birchfield, Stan and Tomasi, Carlo},
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title = {A pixel dissimilarity measure that is insensitive to image sampling},
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journal = {Pattern Analysis and Machine Intelligence, IEEE Transactions on},
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number = {4},
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publisher = {IEEE}
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}
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@ARTICLE{Ballard1981,
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author = {Ballard, Dana H},
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title = {Generalizing the Hough transform to detect arbitrary shapes},
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year = {1981},
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pages = {111--122},
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journal = {Pattern recognition},
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number = {2},
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publisher = {Elsevier}
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}
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@ARTICLE{Borgefors86,
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author = {Borgefors, Gunilla},
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title = {Distance transformations in digital images},
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year = {1986},
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pages = {344--371},
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journal = {Computer vision, graphics, and image processing},
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}
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@ARTICLE{Bouguet00,
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author = {Bouguet, Jean-Yves},
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title = {Pyramidal implementation of the affine lucas kanade feature tracker description of the algorithm},
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year = {2001},
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journal = {Intel Corporation},
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volume = {5}
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}
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@MISC{BouguetMCT,
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author = {Bouguet, Jean-Yves},
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title = {Camera Calibration Tool box for Matlab [EB/OL]},
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year = {2004}
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}
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@INPROCEEDINGS{Bradski00,
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author = {Bradski, GR and Davis, J},
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title = {Motion segmentation and pose recognition with motion history gradients},
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booktitle = {Applications of Computer Vision, 2000, Fifth IEEE Workshop on.},
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year = {2000},
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pages = {238--244},
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organization = {IEEE}
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}
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@ARTICLE{Bradski98,
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author = {Bradski, Gary R},
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title = {Computer vision face tracking for use in a perceptual user interface},
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year = {1998},
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publisher = {Citeseer}
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}
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@book{Breiman84,
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title={Classification and regression trees},
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author={Breiman, Leo and Friedman, Jerome and Stone, Charles J and Olshen, Richard A},
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}
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@INCOLLECTION{Brox2004,
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author = {Brox, Thomas and Bruhn, Andres and Papenberg, Nils and Weickert, Joachim},
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title = {High accuracy optical flow estimation based on a theory for warping},
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year = {2004},
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pages = {25--36},
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}
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@ARTICLE{Burges98,
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author = {Burges, Christopher JC},
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title = {A tutorial on support vector machines for pattern recognition},
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}
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@INPROCEEDINGS{CL12,
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author = {Lu, Cewu and Xu, Li and Jia, Jiaya},
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title = {Contrast preserving decolorization},
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organization = {IEEE}
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}
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@ARTICLE{Canny86,
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author = {Canny, John},
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title = {A computational approach to edge detection},
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journal = {Pattern Analysis and Machine Intelligence, IEEE Transactions on},
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publisher = {IEEE}
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}
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@ARTICLE{ChambolleEtAl,
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author = {Chambolle, Antonin and Caselles, Vicent and Cremers, Daniel and Novaga, Matteo and Pock, Thomas},
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title = {An introduction to total variation for image analysis},
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year = {2010},
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pages = {263--340},
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journal = {Theoretical foundations and numerical methods for sparse recovery},
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volume = {9},
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publisher = {Walter de Gruyter}
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}
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@INPROCEEDINGS{DD02,
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author = {Durand, Fr{\'e}do and Dorsey, Julie},
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title = {Fast bilateral filtering for the display of high-dynamic-range images},
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booktitle = {ACM Transactions on Graphics (TOG)},
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year = {2002},
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pages = {257--266},
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volume = {21},
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number = {3},
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organization = {ACM}
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}
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@INPROCEEDINGS{DM03,
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author = {Drago, Fr{\'e}d{\'e}ric and Myszkowski, Karol and Annen, Thomas and Chiba, Norishige},
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title = {Adaptive logarithmic mapping for displaying high contrast scenes},
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booktitle = {Computer Graphics Forum},
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year = {2003},
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pages = {419--426},
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volume = {22},
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number = {3},
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organization = {Wiley Online Library}
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}
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@INPROCEEDINGS{DM97,
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author = {Debevec, Paul E and Malik, Jitendra},
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title = {Recovering high dynamic range radiance maps from photographs},
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booktitle = {ACM SIGGRAPH 2008 classes},
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year = {2008},
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pages = {31},
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organization = {ACM}
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}
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@INPROCEEDINGS{Dalal2005,
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author = {Dalal, Navneet and Triggs, Bill},
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title = {Histograms of oriented gradients for human detection},
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booktitle = {Computer Vision and Pattern Recognition, 2005. CVPR 2005. IEEE Computer Society Conference on},
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year = {2005},
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pages = {886--893},
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volume = {1},
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organization = {IEEE}
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}
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@INPROCEEDINGS{Davis97,
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author = {Davis, James W and Bobick, Aaron F},
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title = {The representation and recognition of human movement using temporal templates},
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booktitle = {Computer Vision and Pattern Recognition, 1997. Proceedings., 1997 IEEE Computer Society Conference on},
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year = {1997},
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pages = {928--934},
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organization = {IEEE}
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}
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@INPROCEEDINGS{EM11,
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author = {Gastal, Eduardo SL and Oliveira, Manuel M},
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title = {Domain transform for edge-aware image and video processing},
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booktitle = {ACM Transactions on Graphics (TOG)},
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year = {2011},
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pages = {69},
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volume = {30},
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number = {4},
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organization = {ACM}
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}
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@ARTICLE{EP08,
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author = {Evangelidis, Georgios D and Psarakis, Emmanouil Z},
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title = {Parametric image alignment using enhanced correlation coefficient maximization},
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year = {2008},
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pages = {1858--1865},
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journal = {Pattern Analysis and Machine Intelligence, IEEE Transactions on},
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volume = {30},
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number = {10},
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publisher = {IEEE}
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}
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@INPROCEEDINGS{FGD2003,
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author = {Li, Liyuan and Huang, Weimin and Gu, Irene YH and Tian, Qi},
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title = {Foreground object detection from videos containing complex background},
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booktitle = {Proceedings of the eleventh ACM international conference on Multimedia},
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year = {2003},
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pages = {2--10},
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organization = {ACM}
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}
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@ARTICLE{FHT98,
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author = {Friedman, Jerome and Hastie, Trevor and Tibshirani, Robert},
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title = {Additive Logistic Regression: a Statistical View of Boosting},
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@INPROCEEDINGS{FL02,
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author = {Fattal, Raanan and Lischinski, Dani and Werman, Michael},
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title = {Gradient domain high dynamic range compression},
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booktitle = {ACM Transactions on Graphics (TOG)},
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year = {2002},
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pages = {249--256},
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volume = {21},
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number = {3},
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organization = {ACM}
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}
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@INCOLLECTION{Farneback2003,
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author = {Farneb{\"a}ck, Gunnar},
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title = {Two-frame motion estimation based on polynomial expansion},
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booktitle = {Image Analysis},
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year = {2003},
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pages = {363--370},
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publisher = {Springer}
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}
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@INPROCEEDINGS{Farsiu03,
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author = {Farsiu, Sina and Robinson, Dirk and Elad, Michael and Milanfar, Peyman},
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title = {Fast and robust super-resolution},
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booktitle = {Image Processing, 2003. ICIP 2003. Proceedings. 2003 International Conference on},
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year = {2003},
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pages = {II--291},
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volume = {2},
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organization = {IEEE}
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}
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@TECHREPORT{Felzenszwalb04,
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author = {Felzenszwalb, Pedro and Huttenlocher, Daniel},
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title = {Distance transforms of sampled functions},
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year = {2004},
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institution = {Cornell University}
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}
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@ARTICLE{Felzenszwalb10,
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author = {Felzenszwalb, Pedro F and Girshick, Ross B and McAllester, David and Ramanan, Deva},
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title = {Object detection with discriminatively trained part-based models},
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year = {2010},
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pages = {1627--1645},
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journal = {Pattern Analysis and Machine Intelligence, IEEE Transactions on},
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volume = {32},
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number = {9},
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publisher = {IEEE}
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}
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@ARTICLE{Felzenszwalb2006,
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author = {Felzenszwalb, Pedro F and Huttenlocher, Daniel P},
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title = {Efficient belief propagation for early vision},
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year = {2006},
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pages = {41--54},
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journal = {International journal of computer vision},
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volume = {70},
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number = {1},
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publisher = {Springer}
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}
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@INPROCEEDINGS{Fitzgibbon95,
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author = {Fitzgibbon, Andrew W and Fisher, Robert B},
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title = {A buyer's guide to conic fitting},
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booktitle = {Proceedings of the 6th British conference on Machine vision (Vol. 2)},
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year = {1995},
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pages = {513--522},
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organization = {BMVA Press}
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}
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|
@ARTICLE{fitzgibbon1999,
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|
abstract = {This work presents a new efficient method for fitting
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|
ellipses to scattered data. Previous algorithms either
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|
fitted general conics or were computationally expensive. By
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minimizing the algebraic distance subject to the constraint
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|
4ac-b<sup>2</sup>=1, the new method incorporates the
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|
ellipticity constraint into the normalization factor. The
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|
proposed method combines several advantages: It is
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|
ellipse-specific, so that even bad data will always return
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|
an ellipse. It can be solved naturally by a generalized
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|
eigensystem. It is extremely robust, efficient, and easy to
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|
implement},
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author = {Fitzgibbon, Andrew and Pilu, Maurizio and Fisher, Robert B.},
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doi= {10.1109/34.765658},
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isbn= {0162-8828},
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issn= {01628828},
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journal = {IEEE Transactions on Pattern Analysis and Machine
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Intelligence},
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number = {5},
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pages= {476--480},
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pmid= {708},
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|
title= {{Direct least square fitting of ellipses}},
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volume = {21},
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year= {1999}
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}
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@Article{taubin1991,
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abstract = {The author addresses the problem of parametric
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representation and estimation of complex planar curves in
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2-D surfaces in 3-D, and nonplanar space curves in 3-D.
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Curves and surfaces can be defined either parametrically or
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implicitly, with the latter representation used here. A
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planar curve is the set of zeros of a smooth function of
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two variables <e1>x</e1>-<e1>y</e1>, a surface is the set
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|
of zeros of a smooth function of three variables
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|
<e1>x</e1>-<e1>y</e1>-<e1>z</e1>, and a space curve is the
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|
intersection of two surfaces, which are the set of zeros of
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|
two linearly independent smooth functions of three
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|
variables <e1>x</e1>-<e1>y</e1>-<e1>z</e1> For example, the
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|
surface of a complex object in 3-D can be represented as a
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|
|
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