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The pattern of ocular dominance columns in flat-mounts of the cat visual cortexLÖWEL, S; SINGER, W.Experimental brain research. 1987, Vol 68, Num 3, pp 661-666, issn 0014-4819Article

The layout of functional maps in area 18 of strabismic catsSCHMIDT, K.-F; LÖWEL, S.Neuroscience. 2006, Vol 141, Num 3, pp 1525-1531, issn 0306-4522, 7 p.Article

Monocularly induced 2-deoxyglucose patterns in the visual cortex and lateral geniculate nucleus of the cat. II: Awake animals and strabismic animalsLÖWEL, S; SINGER, W.European journal of neuroscience (Print). 1993, Vol 5, Num 7, pp 857-869, issn 0953-816XArticle

STRABISMUS MODIFIES INTRINSIC AND INTER-AREAL CONNECTIONS IN CAT AREA 18SCHMIDT, K.-F; LÖWEL, S.Neuroscience. 2008, Vol 152, Num 1, pp 128-137, issn 0306-4522, 10 p.Article

Early postnatal development of functional ocular dominance columns in cat primary visual cortexRATHJEN, S; LÖWEL, S.Neuroreport (Oxford). 2000, Vol 11, Num 11, pp 2363-2367, issn 0959-4965Article

Monocularly induced 2-deoxyglucose patterns in the visual cortex and lateral geniculate nucleus of the cat. I: Anaesthetized and paralysed animalsLÖWEL, S; SINGER, W.European journal of neuroscience (Print). 1993, Vol 5, Num 7, pp 846-856, issn 0953-816XArticle

Theory meets experiment : correlated neural activity helps determine ocular dominance column periodicityGOODHILL, G. J; LÖWEL, S.Trends in neurosciences (Regular edition). 1995, Vol 18, Num 10, pp 437-439, issn 0166-2236Article

Selection of intrinsic horizontal connections in the visual cortex by correlated neuronal acitivityLÖWEL, S; SINGER, W.Science (Washington, D.C.). 1992, Vol 255, Num 5041, pp 209-212, issn 0036-8075Article

Nature vs. nurture in the development of tangential connections and functional maps in the visual cortexLÖWEL, S; SCHMIDT, K. E; SINGER, W et al.Lecture notes in computer science. 1997, pp 171-176, issn 0302-9743, isbn 3-540-63631-5Conference Paper

Topographic organization of the orientation column system in large flat-mounts of the cat visual cortex: a 2-deoxyglucose studyLÖWEL, S; FREEMAN, B; SINGER, W et al.Journal of comparative neurology (1911). 1987, Vol 225, Num 3, pp 401-415, issn 0021-9967Article

Intrinsic and environmental factors in the development of functional maps in cat visual cortexSENGPIEL, F; GÖDECKE, I; STAWINSKI, P et al.Neuropharmacology. 1998, Vol 37, Num 4-5, pp 607-621, issn 0028-3908Article

Deoxyglucose mapping in the cat visual cortex following carotid artery injection and cortical flat-mountingFREEMAN, B; LOWEL, S; SINGER, W et al.Journal of neuroscience methods. 1987, Vol 20, Num 2, pp 115-129, issn 0165-0270Article

An analysis of orientation and ocular dominance patterns in the visual cortex of cats and ferretsMÜLLER, T; STETTER, M; HÜBENER, M et al.Neural computation. 2000, Vol 12, Num 11, pp 2573-2595, issn 0899-7667Article

Squint affects synchronization of oscillatory responses in cat visual cortexKÖNIG, P; ENGEL, A. K; LÖWEL, S et al.European journal of neuroscience (Print). 1993, Vol 5, Num 5, pp 501-508, issn 0953-816XArticle

Random waves in the brain : Symmetries and defect generation in the visual cortexSCHNABEL, M; KASCHUBE, M; LOWEL, S et al.The European physical journal. Special topics. 2007, Vol 145, pp 137-157, 21 p.Article

Topographic relations between ocular dominance and orientation columns in the cat striate cortexLOWEL, S; BISCHOF, H.-J; LEUTENECKER, B et al.Experimental brain research. 1988, Vol 71, Num 1, pp 33-46, issn 0014-4819Article

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