40. Bernasconi C and König P (1999). On the direction
of interareal interactions in the cat visual system. Biol Cybern 81:199-210
(
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39. Engel AK, Fries P, Roelfsema PR, König P, Brecht M and Singer W (1999).
Does time help to understand consciousness? - A concluding commentary. Conscious Cogn 8:260-268 (
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38. Verschure PFMJ and König P (1999). On the role of biophysical
properties of cortical neurons in binding and segmentation of visual scenes.
Neural Comput 11:1113-1138 (
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PDF)
37. Engel AK, Fries P, Roelfsema
PR, König P, Brecht M and Singer W (1999). Temporal binding, binocular
rivalry and consciousness. Conscious Cogn 8:128-152
C32. Engel AK and König P (1998). Paradigm shifts in the neurobiology of perception. In: Ratsch U, Richter MM, Stamatescu I-O (Hrsg.) Intelligence and Artificial Intelligence. An Interdisciplinary Debate. Springer, Berlin: 178-192
C31. Engel AK, Fries P, Roelfsema PR, König P and Singer W (1998). Temporal binding, binocular rivalry and consciousness. Association for the scientific study of consciousness. Electronic seminars
C30. Engel AK and König P (1998). Das neurobiologische Wahrnehmungs-Paradigma: eine kritische Bestandsaufnahme. In: P. Gold, A.K. Engel (Hrsg) Der Mensch in der Perspektive der Kognitionswissenschaft. Suhrkamp, Frankfurt. (stw 1381): 156-194
C29. König P, Chiang C and von Stein A (1998). Internal context and top-down processing. Behavioural and Brain Sciences 20 4 pp 691-692 (1998)
36. König P, Bizzi E, Burgess N, Franceschini N, Kilgard M, Oram M, Sagerer
G and Scheier C (1998). Representations in natural and artificial systems. Z Naturfor
53c:738-751 (
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35. König P and Luksch H (1998). Active sensing - closing multiple loops.
Z Naturfor 53c:542-549 (
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34. Preissl H, Cruse H, Luksch H,
Malaka R, Neumann T, von Sengbusch G, Warzecha AK, König P, Oram M, Wagner
H, Vollmer G, Mayer-Kress G, Egelhaaf M and Pfeifer R. (1998). The behavior of
natural and artificial systems: solutions to functional demands. Z Naturfor
53c:765-9
C28. Verschure PFMJ and König P (1997). Modulation of temporal interactions in cortical circuits. In: Gross, H.-M. (Ed.), Proceedings of SOAVE ‘97. pp. 77-88 DVI Düsseldorf
C27. Engel AK, Roelfsema PR, König P and Singer W (1997). Neurophysiological relevance of time. In: Ruhnau E, Atmanspacher H (Hrsg.) Time, Temporality, Now. Springer, Berlin: 133-157
33. Fries P, Roelfsema PR, Engel AK, König P and Singer W (1997). Neuronal
synchronization as a correlate of perceptual dominance in awake squinting cats. Proc Natl Acad Sci U S A 94:12699-12704 (
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PDF)
32. Roelfsema PR, Engel AK, König
P and Singer W (1997). Visuomotor integration is associated with zero time-lag synchronization among cortical areas. Nature 385:157-161
(download PDF)
C26. Engel AK, König P and Singer W (1996). Zeitliche Koordinierung im Sehsystem - die Rolle synchroner Aktivität für die neuronale Informationsverarbeitung. Physiologie - Forschung, Lehre, Öffentlichkeit Heft 7 pp. 12-21
C25. Engel AK and König P (1996). Der Aufbau neuronaler Repräsentationen im Sehsystem. In: Rusch G, Schmidt SJ, Breidbach O (Hrsg.) Interne Repräsentationen - Neue Konzepte der Hirnforschung. Suhrkamp, Frankfurt (stw 1277): 122-152
31. Roelfsema PR, König P,
Engel AK and Singer W (1996). The role of neuronal synchronization in response
selection: A biologically plausible theory of structured representation in the
visual cortex. J Cogn Neurosci 8:603-625
30. Neuenschwander S, Engel AK,
König P, Singer W and Varela F (1996). Synchronization of neural responses
in the optic tectum of awake pigeons. Vis Neurosci 13:575-584
29. Munk MHJ, Roelfsema PR, König
P, Engel AK and Singer W (1996). Reticular activation modulates corticla synchronization.
Science 272:271-274
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28. König P, Engel AK, Roelfsema
PR and Singer W (1996). The temporal-correlation hypothesis - reply. Trends
Neurosci 19:415-416
27. König P, Engel AK, Roelfsema
PR and Singer W (1996). Coincidence detection or temporal integration. The role
of the cortical neuron revisited. Trends Neurosci 19:130-137
(download PDF)
26. König P (1995). Zeitliche
Kodierung in neuronalen Netzen: Eigenschaften, Substrat und funktionelle Relevanz
korrelierter Aktivität im visuellen System. Habilitationsschrift, Johann Wolfgang
Goethe-Universität Frankfurt/Main.
25. König P and Engel AK (1995). Correlated
firing in sensori motor systems. Curr Opin Neurobiol 5:511-519
24. König P, Engel AK, Roelfsema PR and Singer W (1995). How precise is neuronal synchronization? Neural
Comput 7:469-485
23. König P, Engel AK and Singer
W (1995). The relation between oscillatory activity and long-range synchrony
in cat visual cortex. Proc Natl Acad Sci U S A 92:290-294
(download PDF)
C24. König P and Engel AK (1994). Kommentar zur Relevanz von konnektionistischen Modellen in der “Computational Neuroscience”. In: K. Möller , G. Paaß (Hrsg). Künstliche neuronale Netze: Eine Bestandsaufnahme. KI 4/1994: 44-46
C23. Roelfsema PR, König P, Engel AK and Singer W (1994). Oscillations and synchrony in the visual cortex: Evidence for their functional relevance. To appear in C. Pantev, T. Elbert and B. Lütkenhöner (Eds.) Oscillatory event related brain dynamics. Plenum Press, New York
22. Roelfsema PR, König P,
Engel AK, Sireteanu R and Singer W (1994). Reduced neuronal synchrony: A physiological
correlate of strabismic amblyopia in cat visual cortex. Eur J Neurosci 6:1645-1655
21. König P (1994). A method
for the quantification of synchrony and oscillatory properties of neuronal activity. J Neurosci
Methods 54:31-37
(download PDF)
20. Schillen TB and König P
(1994). Binding by temporal structure in multiple feature domains. Biol Cybern
70:397-405
(download PDF)
C22. Engel AK, König P, Kreiter AK, Schillen TB and Singer W (1994). Temporal coding in the visual cortex: new vistas on integration in the nervous system. In H. Gutfreund, G. Toulouse (Hrsg) Biology and Computation: A physicist’s choice, page 218-226. World Scientific Publishin, Singapur. Wiederabgedruckt aus Trends in Neurosciences
C21. Deppisch J, Bauer H-U, Schillen TB, König P, Pawelzik K and Geisel T (1993). Stochastic and oscillatory burst activities in a model of spiking neurons. In: International conference on artificial neuronal networks, Brighton
C20. Gray CM, König P, Engel AK and Singer W (1993). Oscillatory responses in cat visual cortex exhibit inter-columnar synchronization which reflects global stimulus properties. In: S. M. Kosslyn and R. A. Anderson (eds.) Frontiers in cognitive neuroscience, 49-51. MIT Press, Cambridge / Nachdruck aus Nature
C19. Engel AK and König P (1993). Paradigm shifts in neurobiology: Towards a new theory of perception. In: R. Casati and G. White (eds.), Philosophy and the cognitive sciences, page 131-138. Proceedings of the 16th Wittgenstein Symposium. Wittgenstein-Gesellschaft, Kirchberg
C18. Engel AK, König P and Singer W (1993). Bildung repräsentationaler Zustände im Gehirn. Spektrum der Wissenschaften, Heft 9, 42-47
C17. Schillen TB and König P (1993). Temporal structures can solve the binding problem for multiple feature domains. In: F. H. Eeckman and J. M. Bower (eds.) Computation and neural systems, page 503-508. Kluwer Academic Publishers, Boston, Dordrecht, London
C16. König P and Schillen TB (1993). Assembly formation and segregation by a self-organizing neuronal oscillator model. In: F. H. Eeckman and J. M. Bower (eds.) Computation and neural systems, page 509-514. Kluwer Academic Publishers, Boston, Dordrecht, London
C15. Atkeson C, Bauer KD, Byrne JH, Friedlander MJ, König P, Körner E, Levy WB, Mishkin M, Poggio TA and Willshow DJ (1993). Forms and mechanisms of learning. In: T. Poggio and D.A. Glaser (eds.) Exploring brain functions: models in neuroscience, 127-138. Wiley, New York
C14. Singer W, Artola A, Engel AK, König P, Kreiter AK, Löwel S and Schillen TB (1993). Neuronal representations and temporal codes. In: T. Poggio and D.A. Glaser (eds.) Exploring brain functions: models in neuroscience, 179-194. Wiley, New York
19. Deppisch J, Bauer HU, Schillen
TB, König P, Pawelzik K and Geisel T (1993). Oscillatory and stochastic
states as a coexisting network phenomenon. Network 4:243-257
18. König P, Engel AK, Löwel
S and Singer W (1993). Squint affects synchronization of oscillatory responses
in cat visual cortex. Eur J Neurosci 5:501-508
(download PDF)
C13. Gray CM, Engel AK, König P and Singer W (1992). Mechanisms underlying the generation of neuronal oscillations in cat visual cortex. In: T. Bullock and E. Basar (eds.) Induced Rhythmicities in the Brain, page 29-45.
C12. Engel AK, König P and Singer W (1992). Correlated neuronal firing: A clue to the integrative functions of cortex? In: J. Taylor, Caianello, Coterila and Clarke (eds.) Complex dynamics in neural networks, page 125-139. Springer, Berlin
17. Engel AK, König P and Singer
W (1992). The functional nature of neuronal oscillations: reply. Trends Neurosci
15:387-388
(download PDF)
16. Engel AK, König P, Kreiter
AK, Schillen TB and Singer W (1992). Temporal coding in the visual cortex: new
vistas on integration in the nervous system. Trends Neurosci 15:218-226
(download PDF)
15. Gray CM, Engel AK, König
P and Singer W (1992). Synchronization of oscillatory neuronal responses in
cat striate cortex: Temporal properties. Vis Neurosci 8:337-347
14. Engel AK, König P and Schillen
TB (1992). Why does the cortex oscillate? Curr Biol 2:332-334
(download PDF)
13. König P, Janosch B and
Schillen TB (1992). Stimulus-dependent assembly formation of oscillatory responses:
III. Learning. Neural Comput 4:769-784
C11. Gray CM, Engel AK, König P and Singer W (1991). Synchronous neuronal oscillations in cat visual cortex: functional implications. In: A. Gorea, Y. Fregnac, Z. Kapoula and J. Findlay (eds.) Representations of Vision. Trends and Tacit Assumptions in Vision Research, page 83-96. Cambridge University Press
C10. Gray CM, Engel AK, König P and Singer W (1991). Temporal properties of synchronous oscillatory neuronal interactions in cat striate cortex. In: H. G. Schuster (editor) Nonlinear Dynamics and Neuronal Networks, page 27-55. VCH Weinheim, New York, Basel, Cambridge
C9. Engel AK, König P, Kreiter AK, Gray CM and Singer W (1991). Temporal coding by coherent oscillations as a potential solution to the binding problem: Physiological evidence. In: H. G. Schuster (editor) Nonlinear Dynamics and Neuronal Networks, page 3-25 VCH Weinheim, New York, Basel, Cambridge
C8. Schillen TB and König P (1991). Temporal coding by coherent oscillations as a potential solution to the binding problem: Neural network simulations. In: H. G. Schuster (editor) Nonlinear Dynamics and Neuronal Networks, page 153-171 VCH Weinheim, New York, Basel, Cambridge
C7. Schillen TB and König P (1991). Coherency detection and response segregation by synchronizing and desynchronizing delay connections in a neural oscillator model. Proceedings, International Joint Conference on Neural Networks. II 387-395 San Diego
12. Engel AK, König P and Singer W (1991). Direct physiological evidence
for scene segmentation by temporal coding. Proc Natl Acad Sci U S A 88:9136-9140 (
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PDF)
11. Engel AK, Kreiter AK, König P and Singer W (1991). Synchronization
of oscillatory neuronal responses between striate and extrastriate visual cortical
areas of the cat. Proc Natl Acad Sci U S A 88:6048-6052 (
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PDF)
10. Engel AK, König P, Kreiter
AK and Singer W (1991). Inter-hemispheric synchronization of oscillatory neuronal
responses in cat visual cortex. Science 252:1177-1179
(download PDF)
9. Schillen TB and König P
(1991). Stimulus-dependent assembly formation of oscillatory responses: II.
Desynchronization. Neural Comput 3:167-178
(download PDF)
8. König P and Schillen TB
(1991). Stimulus-dependent assembly formation of oscillatory responses: I. Synchronization.
Neural Comput 3:155-166
(download PDF)
C6. Singer W, Gray CM, Engel AK, König P, Artola A and Bröcher S (1990). Formation of cortical cell assemblies. Cold Spring Harbor Symposia on Quantitative Biology, Volume LV, page 939-952. Cold Spring Harbor Laboratory Press
C5. König P and Schillen TB (1990). Segregation of oscillatory responses by conflicting stimuli - Desynchronizing connections in neural oscillator layers. In: R. Eckmiller, G. Hartmann and G. Hauske (eds.) Parallel Processing in Neural systems and Computers. Elsevier Science Publishers B.V.
C4. Schillen TB and König P (1990). Coherency detection by coupled oscillatory responses - Synchronizing connections in neural oscillatory layers. In: R. Eckmiller, G. Hartmann and G. Hauske (eds.) Parallel Processing in Neural systems and Computers. Elsevier Science Publishers B.V.
C3. Engel AK, König P, Gray CM and Singer W (1990). Synchronization of oscillatory responses: A mechanism for stimulus dependent assembly formation. In: R. Eckmiller, G. Hartmann and G. Hauske (eds.) Parallel Processing in Neural systems and Computers, page 105-108. Elsevier Science Publishers B.V.
C2. Gray CM, König P, Engel AK and Singer W (1990). Synchronization of oscillatory responses in visual cortex: A mechanism for scene segmentation. In: H. Haken and M. Stadler (eds.) Proceedings of the international Symposium on Synergetics of cognition. Springer Series in Synergetics, Vol. 45, Synergetics of Cognition, page 82-98. Springer-Verlag Berlin, Heidelberg
7. Gray CM, Engel AK, König
P and Singer W (1990). Stimulus-dependent oscillations in cat visual cortex.
Feature dependence and receptive field properties. Eur J Neurosci 2:607-619
6. Engel AK, König P, Gray
CM and Singer W (1990). Stimulus-dependent neuronal oscillations in cat visual
cortex: Inter-columnar interactions as determined by cross-correlation analysis.
Eur J Neurosci 2:588-606
5. König P (1990). Untersuchungen
des Hypothalamus-Hypophysen-Nebennierenrinden Regelkreises mittels des Insulinhypoglycämietests
bei Patienten mit Steroidbehandlung und Kontrollpersonen. Dissertation, medizinische
Fakultät der Universität Würzburg.
4. Gray CM, König P, Engel
AK and Singer W (1989). Oscillatory responses in cat visual cortex exhibit inter-columnar
synchronization which reflects global stimulus properties. Nature 338:334-337
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(This article was featured no. 9 of the
Top 100 papers in Vision Science on November 19, 2007.)
3. Kaernbach CG, König P and
Schillen TB (1987). On Riccati equations describing impedance relations for
forward and backward excitation in the one-dimensional cochlea model. J Acoust
Soc Am 81:408-411
2. de Boer E, Kaernbach CG, König
P and Schillen TB (1986). Forward and reverse waves in the one-dimensional model
of the cochlea. Hear Res 23:1-7
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1. König P (1986). Aktive nichtlineare
Oszillatoren für Modelle des Innenohrs. Diplomarbeit. Physikalisches Institut
der Universität Bonn, Bonn-Ir-86-04. Bonn.
C1. de Boer E, Kaernbach CG, König P and Schillen TB (1985). An isolated sound emitter in the cochlea: notes on modeling. In: J. B. Allen, J. L. Hall, A. Hubbart, S. T. Neely and A. Tubis (eds.) Peripheral Auditory Mechanisms, Proceedings. Springer-Verlag New York