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However, ANOVA uses categorical independent variables and a continuous dependent variable, whereas discriminant analysis has continuous independent variables and a categorical dependent variable (i.e. Logistic regression and probit regression are more similar to LDA than ANOVA is, as they also explain a categorical variable by the values of continuous independent variables.

Discriminant analysis is also different from factor analysis in that it is not an interdependence technique: a distinction between independent variables and dependent variables (also called criterion variables) must be made.

Smith [link] Fusing bio-inspired vision data for simplified high level scene interpretation: Application to face motion analysis A. Caplier [link] A video-based door monitoring system using local appearance-based face models Hazim Kemal Ekenel, Johannes Stallkamp, Rainer Stiefelhagen [link] Multi-view face segmentation using fusion of statistical shape and appearance models Constantine Butakoff, Alejandro F. Cohn [link] Modelling human perception of static facial expressions M.

This web site aims to provide an overview of resources concerned with probabilistic modeling, inference and learning based on Gaussian processes.

[link] Local Derivative Pattern Versus Local Binary Pattern: Face Recognition With High-Order Local Pattern Descriptor Baochang Zhang; Yongsheng Gao; Sanqiang Zhao; Jianzhuang Liu [link] Fusing Local Patterns of Gabor Magnitude and Phase for Face Recognition Shufu Xie; Shiguang Shan; Xilin Chen; Jie Chen [link] Cluster-Based Distributed Face Tracking in Camera Networks Yoder, J.; Medeiros, H.; Park, J.; Kak, A. [link] Automatic Face Segmentation and Facial Landmark Detection in Range Images Pamplona Segundo, M.; Silva, L.; Bellon, O. Shapiro [link] 3D face recognition with sparse spherical representations R.

[link] IEEE Transactions on Neural Networks Conformation-Based Hidden Markov Models: Application to Human Face Identification Bouchaffra, D. [link] Face Transformation With Harmonic Models by the Finite-Volume Method With Delaunay Triangulation Li, Z.-C.; Chiang, J.