 | 2009 |
| 10 |  | Stephan Hasler,
Heiko Wersing,
Stephan Kirstein,
Edgar Körner:
Large-Scale Real-Time Object Identification Based on Analytic Features.
ICANN (2) 2009: 663-672 |
| 9 |  | Stephan Kirstein,
Alexander Denecke,
Stephan Hasler,
Heiko Wersing,
Horst-Michael Gross,
Edgar Körner:
A vision architecture for unconstrained and incremental learning of multiple categories.
Memetic Computing 1(4): 291-304 (2009) |
| 2008 |
| 8 |  | Stephan Kirstein,
Heiko Wersing,
Horst-Michael Gross,
Edgar Körner:
A Vector Quantization Approach for Life-Long Learning of Categories.
ICONIP (1) 2008: 805-812 |
| 7 |  | Stephan Kirstein,
Heiko Wersing,
Horst-Michael Gross,
Edgar Körner:
An Integrated System for Incremental Learning of Multiple Visual Categories.
ICONIP (1) 2008: 813-820 |
| 6 |  | Heiko Wersing,
Stephan Kirstein,
Bernd Schneiders,
Ute Bauer-Wersing,
Edgar Körner:
Online Learning for Bootstrapping of Object Recognition and Localization in a Biologically Motivated Architecture.
ICVS 2008: 383-392 |
| 5 |  | Stephan Kirstein,
Heiko Wersing,
Edgar Körner:
A biologically motivated visual memory architecture for online learning of objects.
Neural Networks 21(1): 65-77 (2008) |
| 2007 |
| 4 |  | Heiko Wersing,
Stephan Kirstein,
Michael Götting,
Holger Brandl,
Mark Dunn,
Inna Mikhailova,
Christian Goerick,
Jochen J. Steil,
Helge Ritter,
Edgar Körner:
Online Learning of Objects in a Biologically Motivated Visual Architecture.
Int. J. Neural Syst. 17(4): 219-230 (2007) |
| 2006 |
| 3 |  | Heiko Wersing,
Stephan Kirstein,
Michael Götting,
Holger Brandl,
Mark Dunn,
Inna Mikhailova,
Christian Goerick,
Jochen J. Steil,
Helge Ritter,
Edgar Körner:
A Biologically Motivated System for Unconstrained Online Learning of Visual Objects.
ICANN (2) 2006: 508-517 |
| 2005 |
| 2 |  | Stephan Kirstein,
Heiko Wersing,
Edgar Körner:
Rapid Online Learning of Objects in a Biologically Motivated Recognition Architecture.
DAGM-Symposium 2005: 301-308 |
| 1 |  | Stephan Kirstein,
Heiko Wersing,
Edgar Körner:
Online Learning for Object Recognition with a Hierarchical Visual Cortex Model.
ICANN (1) 2005: 487-492 |