Publications
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How can squint change the spacing of ocular dominance columns?. Journal of Physiology, Paris 94 (5-6), 525–537 (2000).
Theory of non-classical receptive field phenomena in the visual cortex. Neurocomputing 26–27, 367–374 (1999).
1998_ernst_neucom.pdf (188.81 KB)

Orientation contrast enhancement modulated by differential long-range interaction in visual cortex. CNS 1997 361–366 (Plenum Press New York and London, 1998).
1997_ernst_cns.pdf (353.17 KB)

Orientation preference geometry modulates nonclassical receptive field properties. Proceedings of the 26th Göttingen Neurobiology Conference 1998 759 (1998).
1998_pawelzik_goe.pdf (73.97 KB)

Geometry of orientation preference map determines nonclassical receptive field properties. ICANN 1997 Artificial Neural Networks 231–236 (Springer, Berlin/Heidelberg, 1997).
1997_ernst_icann.pdf (271.57 KB)

Orientation contrast sensitivity from long-range interactions in visual cortex. Proceedings of the 25th Göttingen Neurobiology Conference 61 (1997).
1997_pawelzik_goe.pdf (61.26 KB)

Selbstorganisierende Neuronale Karten. Spektrum der Wissenschaft, Dossier 4/97: Kopf oder Computer, Sonderheft 74–83 (1997).
Correlation dependence of ocular dominance patterns requires receptive field shrinkage during development. CNS \'95: Computational Neuroscience ( ) 239–244 (Kluwer Academic Press, 1996).
Orientation contrast sensitivity from long-range interactions in visual cortex. NIPS 1996: Advances in Neural Information Processing Systems 9 90–96 (1996).
1996_pawelzik_nips.pdf (261.71 KB)

Precise restoration of cortical orientation maps explained by {Hebbian} dynamics of geniculocortical connections. ICANN \'96: Artificial Neural Networks ( ) 415–419 (Springer, 1996).
Selbstorganisierende Neuronale Karten. Spektrum der Wissenschaft Nr. 4 38–47 (1996).
Verhandlungen der Deutschen Physikalischen Gesellschaft 5 (31), 1311 (1996).
Proceedings of the 23rd Göttingen Neurobiology Conference 1995 ( ) 94 (Thieme, 1995).
Linear and nonlinear dynamics in the development of orientation preference maps. CNS \'94: The Neurobiology of Computation ( ) 359–364 (Kluwer, 1995).
Verhandlungen der Deutschen Physikalischen Gesellschaft 5 (30), 1106 (1995).
Verhandlungen der Deutschen Physikalischen Gesellschaft 5 (29), 955 (1994).
Emergence of long range order in maps of orientation preference. ICANN \'94 Proceedings ( ) 38–41 (Springer, 1994).
Göttingen Neurobiology Report 1994 ( ) 540 (Thieme, Stuttgart, 1994).
Verhandlungen der Deutschen Physikalischen Gesellschaft 5 (29), 974 (1994).
CNS \'93: Computation in Neurons and Neural Systems ( ) 103–107 (Kluwer, 1994).
Optimal smoothness of orientation preference maps. CNS \'93: Computation in Neurons and Neural Systems ( ) 97–101 (Kluwer, 1994).
Göttingen Neurobiology Report 1994 ( ) 510 (Thieme, 1994).
Unification of complementary feature map models. ICANN \'94 Proceedings ( ) 338–341 (Springer, 1994).
The formation of representations in the visual cortex. From Statistical Physics to Statistical Inference and Back ( ) 249–251 (Kluwer, 1993).
Göttingen Neurobiology Report 1993: Genes, Brain and Behavior ( ) 436 (Georg Thieme Verlag, 1993).
Map structure from pinwheel position. ICANN \'93 Proceedings ( ) 131–135 (Springer, 1993).