721 | -- | 722 | Marie Cottrell, Michel Verleysen. Advances in Self-Organizing Maps |
723 | -- | 733 | Teuvo Kohonen. Self-organizing neural projections |
734 | -- | 743 | Thomas J. Sullivan, Virginia R. de Sa. Homeostatic synaptic scaling in self-organizing maps |
744 | -- | 750 | Marc M. Van Hulle. Topographic map formation of factorized Edgeworth-expanded kernels |
751 | -- | 761 | Jörg Ontrup, Helge Ritter. Large-scale data exploration with the hierarchically growing hyperbolic SOM |
762 | -- | 771 | Marie Cottrell, Barbara Hammer, Alexander Hasenfuss, Thomas Villmann. Batch and median neural gas |
772 | -- | 779 | Thomas Villmann, Barbara Hammer, Frank-Michael Schleif, Tina Geweniger, Wieland Hermann. Fuzzy classification by fuzzy labeled neural gas |
780 | -- | 784 | Hujun Yin. On the equivalence between kernel self-organising maps and self-organising mixture density networks |
785 | -- | 798 | Guilherme De A. Barreto, Luís Gustavo M. Souza. Adaptive filtering with the self-organizing map: A performance comparison |
799 | -- | 811 | Takanori Koga, Keiichi Horio, Takeshi Yamakawa. The Self-Organizing Relationship (SOR) network employing fuzzy inference based heuristic evaluation |
812 | -- | 816 | Jean-Claude Fort. SOM s mathematics |
817 | -- | 829 | Anarta Ghosh, Michael Biehl, Barbara Hammer. Performance analysis of LVQ algorithms: A statistical physics approach |
830 | -- | 837 | Joseph Rynkiewicz. Self-organizing map algorithm and distortion measure |
838 | -- | 846 | Patrick Rousset, Christiane Guinot, Bertrand Maillet. Understanding and reducing variability of SOM neighbourhood structure |
847 | -- | 854 | Ludovic Lebart. Assessing self organizing maps via contiguity analysis |
855 | -- | 863 | Brieuc Conan-Guez, Fabrice Rossi, Aïcha El Golli. Fast algorithm and implementation of dissimilarity self-organizing maps |
864 | -- | 876 | Catherine Aaron. Graph-based normalization and whitening for non-linear data analysis |
877 | -- | 888 | Geoffroy Simon, John Aldo Lee, Michel Verleysen. Unfolding preprocessing for meaningful time series clustering |
889 | -- | 899 | Jarkko Venna, Samuel Kaski. Local multidimensional scaling |
900 | -- | 910 | Yingxin Wu, Masahiro Takatsuka. Spherical self-organizing map using efficient indexed geodesic data structure |
911 | -- | 922 | Georg Pölzlbauer, Michael Dittenbach, Andreas Rauber. Advanced visualization of Self-Organizing Maps with vector fields |
923 | -- | 934 | Pablo A. Estévez, Cristián J. Figueroa. Online data visualization using the neural gas network |
935 | -- | 949 | Elena V. Samsonova, Joost N. Kok, Adriaan P. IJzerman. TreeSOM: Cluster analysis in the self-organizing map |
950 | -- | 962 | Shaun Mahony, Panayiotis V. Benos, Terry J. Smith, Aaron Golden. Self-organizing neural networks to support the discovery of DNA-binding motifs |
963 | -- | 972 | Madalina Olteanu. A descriptive method to evaluate the number of regimes in a switching autoregressive model |
974 | -- | 0 | Gang Leng, Girijesh Prasad, T. Martin McGinnity. Erratum to An on-line algorithm for creating self-organizing fuzzy neural networks [Neural Networks 17(10)(2004)1477-1493] |
975 | -- | 0 | Diego Loyola. Erratum to Applications of neural network methods to the processing of earth observation satellite data [Neural Netw. (2) (2006) 168-177] |