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3. Design an experiment to evaluate the effect of different distance measures between two
vectors of model-fitting weights.
4. How would you place landmarks to build a morphable model that is suitable for fitting to
faces that show surprise, or bitterness?
References
Amberg B, Knothe R, Vetter T. Expression invariant 3D face recognition with a morphable model automatic face and
gesture recognition. In: Proceedings of the 8th IEEE International Conference on Automatic Face and Gesture
Recognition (FGR'08); 2008 Sept 17-19, Amsterdam, The Netherlands. New York: IEEE. 2008. p. 1-7.
Amberg B, Romdhani S, Vetter T. Optimal step nonrigid ICP algorithms for surface registration. IEEE Conference
on Computer Vision and Pattern Recognition, CVPR'07; 2007 Jun 17-22, Minneapolis, MN. New York: IEEE.
2007. p. 1-8.
Basso C, Verri A. Fitting 3D morphable models using implicit representations. Journal of Virtual Reality and
Broadcasting 2007;4(18):1-10.
Basso C, Paysan P, Vetter T. Registration of Expressions Data using a 3DMorphable Model. In: Proceedings of the 7th
International Conference on Automatic Face and Gesture Recognition (FGR'06); 2006 Apr 2-6, Southampton,
UK. New York: IEEE. 2006. p. 205-210.
Berretti S, Del Bimbo A, Pala P, Silva Mata F. Face recognition by matching 2D and 3D geodesic distances. In: Sebe
N, Liu Y, Zhuang Y, editors. Proceedings of the International Workshop on Multimedia Content Analysis and
Mining (MCAM'07): Lecture Notes in Computer Science. Volume 4577; 2007 Jun 29-30, Weihai, China. Berlin
Heidelberg: Springer. 2007. p. 444-453.
Besl PJ, McKay ND. A method for registration of 3D Shapes. IEEE Transactions on Pattern Analysis and Machine
Intelligence 1992;14(2):239-256.
Blanz V, Vetter T. A morphable model for the synthesis of 3D faces. In: Proceedings of the 26th Annual Conference
on Computer Graphics, SIGGRAPH 99; 1999 Aug 8-13, Los Angeles, CA. New York: ACM Press. 1999. pp.
187-194.
Blanz V, Vetter T. Face recognition based on fitting a 3D morphable model. IEEE Transactions on Pattern Analysis
and Machine Intelligence 2003;25(9):1063-1074.
Blanz V, Scherbaum K, Seidel HP. Fitting a morphable model to 3D scans of faces. In: Proceedings of IEEE 11th
International Conference on Computer Vision; 2007 Oct 14-21, Rio de Janeiro. New York: IEEE. 2007. p. 1-8.
Bronstein AM, Bronstein MM, Kimmel R. Three-dimensional face recognition. International Journal of Computer
Vision 2005;64(1):5-30.
CAESAR-survey. The Civilian American and European Surface Anthropometry Resource. Available at:
http://store.sae.org/caesar, accessed Mar 1, 2013. Warrendale, PA: SAE International; 2008.
Chang KI, Bowyer KW, Flynn PJ. An evaluation of multimodal 2D
+
3D face biometrics. IEEE Transactions on
Pattern Analysis and Machine Intelligence 2005;27(4):619-624.
Cignoni P, Rocchini C, Scopigno R. Metro: Measuring error on simplified surfaces. Computer Graphics Forum
1998;17:167-174.
Davis J, Marschner SR, GarrM, LevoyM. Filling holes in complex surfaces using volumetric diffusion. In: Proceedings
of the First International Symposium on 3D Data Processing, Visualization and Transmission; 2002 Jun 19-21,
Padua, Italy. New York: IEEE. 2002. p. 428-861. 2002
Faltemier T, Bowyer K, Flynn P. A region ensemble for 3-D face recognition. IEEE Transactions on Information
Forensics and Security 2008;1(3):62-73.
Huang X, Paragios N, Metaxas DN. Shape registration in implicit spaces using information theory and free form
deformations. IEEE Transactions on Pattern Analysis and Machine Intelligence 2006;28(8), 1303-1318.
Kakadiaris I, Passalis G, Toderici G, Murtuza N, Theoharis T. 3D face recognition. In: Chantler M, Fisher M, Trucco
M, editors. Proceedings of the British Machine Vision Conference; 2006 Sept 4-7, Edinburgh, UK. Edinburgh:
BMVA Press. 2006. p. 869-878.
Kirkpatrick S, Gelatt CD, Vecchi MP. Optimization by Simulated Annealing. Science, New Series 1983; 220(4598):
671-680.
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