Samir Chafik, Srivastava Anuj, Daoudi Mohamed
LIFL (UMR/USTL CNRS 8022), Cite Scientifique, Villeneuve d'Ascq, France.
IEEE Trans Pattern Anal Mach Intell. 2006 Nov;28(11):1858-63. doi: 10.1109/TPAMI.2006.235.
We study shapes of facial surfaces for the purpose of face recognition. The main idea is to 1) represent surfaces by unions of level curves, called facial curves, of the depth function and 2) compare shapes of surfaces implicitly using shapes of facial curves. The latter is performed using a differential geometric approach that computes geodesic lengths between closed curves on a shape manifold. These ideas are demonstrated using a nearest-neighbor classifier on two 3D face databases: Florida State University and Notre Dame, highlighting a good recognition performance.
我们为了人脸识别的目的研究面部表面形状。主要思路是:1)用深度函数的水平曲线(称为面部曲线)的并集来表示表面;2)使用面部曲线的形状隐式地比较表面形状。后者通过一种微分几何方法来实现,该方法计算形状流形上封闭曲线之间的测地长度。在两个3D人脸数据库(佛罗里达州立大学和圣母大学)上使用最近邻分类器对这些想法进行了验证,突出了良好的识别性能。