Discriminative Dimensionality Reduction for the Visualization of Classifiers

Gisbrecht A, Schulz A, Hammer B (2014)
In: Pattern Recognition Applications and Methods. Advances in Intelligent Systems and Computing, 318. Springer Science + Business Media: 39-56.

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Gisbrecht A, Schulz A, Hammer B. Discriminative Dimensionality Reduction for the Visualization of Classifiers. In: Pattern Recognition Applications and Methods. Advances in Intelligent Systems and Computing. Vol 318. Springer Science + Business Media; 2014: 39-56.
Gisbrecht, A., Schulz, A., & Hammer, B. (2014). Discriminative Dimensionality Reduction for the Visualization of Classifiers. Pattern Recognition Applications and Methods, 318, 39-56.
Gisbrecht, A., Schulz, A., and Hammer, B. (2014). “Discriminative Dimensionality Reduction for the Visualization of Classifiers” in Pattern Recognition Applications and Methods Advances in Intelligent Systems and Computing, vol. 318, (Springer Science + Business Media), 39-56.
Gisbrecht, A., Schulz, A., & Hammer, B., 2014. Discriminative Dimensionality Reduction for the Visualization of Classifiers. In Pattern Recognition Applications and Methods. Advances in Intelligent Systems and Computing. no.318 Springer Science + Business Media, pp. 39-56.
A. Gisbrecht, A. Schulz, and B. Hammer, “Discriminative Dimensionality Reduction for the Visualization of Classifiers”, Pattern Recognition Applications and Methods, Advances in Intelligent Systems and Computing, vol. 318, Springer Science + Business Media, 2014, pp.39-56.
Gisbrecht, A., Schulz, A., Hammer, B.: Discriminative Dimensionality Reduction for the Visualization of Classifiers. Pattern Recognition Applications and Methods. Advances in Intelligent Systems and Computing. 318, p. 39-56. Springer Science + Business Media (2014).
Gisbrecht, Andrej, Schulz, Alexander, and Hammer, Barbara. “Discriminative Dimensionality Reduction for the Visualization of Classifiers”. Pattern Recognition Applications and Methods. Springer Science + Business Media, 2014.Vol. 318. Advances in Intelligent Systems and Computing. 39-56.
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