13.01.2015 Views

Face Detection and Modeling for Recognition - Biometrics Research ...

Face Detection and Modeling for Recognition - Biometrics Research ...

Face Detection and Modeling for Recognition - Biometrics Research ...

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

[18] The FACEit System, .<br />

[19] R. Féraud, O.J. Bernier, J.-E. Viallet, <strong>and</strong> M. Collobert, “A fast <strong>and</strong> accurate<br />

face detection based on neural network,” IEEE Trans. Pattern Analysis <strong>and</strong><br />

Machine Intelligence, vol. 23, no. 1, pp. 42–53, Jan. 2001.<br />

[20] D. Maio <strong>and</strong> D. Maltoni, “Real-time face location on gray-scale static images,”<br />

Pattern <strong>Recognition</strong>, vol. 33, no. 9, pp. 1525–1539, Sept. 2000.<br />

[21] C. Garcia <strong>and</strong> G. Tziritas, “<strong>Face</strong> detection using quantized skin color regions<br />

merging <strong>and</strong> wavelet packet analysis,” IEEE Transactions Multimedia, vol.<br />

MM-1, no. 3, pp. 264–277, Sept. 1999.<br />

[22] H. Schneiderman <strong>and</strong> T. Kanade, “A statistical method <strong>for</strong> 3D object detection<br />

applied to faces <strong>and</strong> cars,” Proc. IEEE Int’l Conf. Computer Vision <strong>and</strong> Pattern<br />

<strong>Recognition</strong>, pp. 746–751, June 2000.<br />

[23] H.A. Rowley, S. Baluja, <strong>and</strong> T. Kanade, “Rotation invariant neural networkbased<br />

face detection,” Proc. IEEE Int’l Conf. Computer Vision <strong>and</strong> Pattern<br />

<strong>Recognition</strong>, pp. 38–44, 1998.<br />

[24] H.A. Rowley, S. Baluja, <strong>and</strong> T. Kanade, “Neural network-based face detection,”<br />

IEEE Trans. Pattern Analysis <strong>and</strong> Machine Intelligence, vol. 20, no. 1, pp. 23–<br />

38, Jan. 1998.<br />

[25] K.K. Sung <strong>and</strong> T. Poggio, “Example-based learning <strong>for</strong> view-based human face<br />

detection,” IEEE Trans. Pattern Analysis <strong>and</strong> Machine Intelligence, vol. 20,<br />

no. 1, pp. 39–51, Jan. 1998.<br />

[26] K.C. Yow <strong>and</strong> R. Cipolla, “Feature-based human face detection,” Image <strong>and</strong><br />

Vision Computing, vol. 25, no. 9, pp. 713–735, Sept. 1997.<br />

[27] M.S. Lew <strong>and</strong> N. Huijsmans, “In<strong>for</strong>mation theory <strong>and</strong> face detection,” Proc.<br />

IEEE Int’l Conf. Pattern <strong>Recognition</strong>, pp. 601–605, Aug. 1996.<br />

[28] P.J. Phillips, H. Moon, S.A. Rizvi, <strong>and</strong> P.J. Rauss, “The FERET evaluation<br />

methodology <strong>for</strong> face-recognition algorithms,” IEEE Trans. Pattern Analysis<br />

<strong>and</strong> Machine Intelligence, vol. 22, no. 10, pp. 1090–1104, Oct. 2000.<br />

[29] M. Turk <strong>and</strong> A. Pentl<strong>and</strong>, “Eigenfaces <strong>for</strong> recognition,” Journal of Cognitive<br />

Neuroscience, vol. 3, no. 1, pp. 71–86, 1991.<br />

[30] XM2VTS face database, .<br />

[31] J. Weng <strong>and</strong> D.L. Swets, “<strong>Face</strong> recognition,” in <strong>Biometrics</strong>: Personal Identification<br />

in Networked Society, A.K. Jain, R. Bolle, <strong>and</strong> S. Pankanti, Eds., pp.<br />

67–86, Kluwer Academic, Boston, MA, 1999.<br />

166

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!