D. Ankaoua and R. Malach.
Evidence for plasticity of intrinsic
horizontal connections in area 17 of the rat, Israeli Journal of Medical Science,
29:555-569, 1993.
P. Baldi and R. Meir.
Computing with arrays of coupled
oscillators: An application to preattentive texture discrimination,
Neural Computation, 2:458-471, 1990.
S. L. Bressler, R. Coppola, and R. Nakamura.
Episodic multiregional
cortical coherence at multiple frequencies during visual task performance,
Nature, 366:153-156, 1993.
S. Campbell and D. L. Wang.
Relaxation oscillators with time
delay coupling, Proceedings of the World Congress on Neural Networks (WCNN-95),
Washington DC, 1995.
S. Campbell and D. L. Wang.
Synchronization and
desynchronization in a network of Wilson-Cowan oscillators, IEEE
Transactions on Neural Networks, in press.
T. Chawanya, T. Aoyagi, I. Nishikawa, K. Okuda, and Y. Kuramoto.
A model for feature linking via collective oscillations in the primary
visual cortex, Biological Cybernetics, 68:483-490, 1993.
A. H. Cohen, P. J. Holmes, and R. H. Rand.
The nature of coupling
between segmental oscillators of the lamprey spinal generator for
locomotion: A mathematical model, Journal of Mathematical Biology, 13:345-369, 1982.
R. Eckhorn, R. Bauer, W. Jordan, M. Brosch, W. Kruse, M. Munk, and
H. J. Reitboeck.
Coherent oscillations: A mechanism of feature
linking in the visual cortex? Biological Cybernetics, 60:121-130, 1988.
A. K. Engel, P. König, A. K. Kreiter, and W. Singer,
Interhemispheric synchronization of oscillatory neuronal responses in
cat visual cortex, Science, 252:1177-1179, 1991.
A. K. Engel, P. König, A. K. Kreiter, and W. Singer,
Synchronization of oscillatory neuronal responses between striate and
extrastriate visual cortical areas of the cat, Proceedings of the National Academy of Sciences USA, 88:6048-6052, 1991.
G. B. Ermentrout.
Stable periodic solutions to discrete and
continuum arrays of weakly coupled nonlinear oscillators, SIAM
Journal of Applied Mathematics, 52:1665-1687, 1992.
D. Geman, S. Geman, C. Graffigne, and P. Dong.
Boundary
detection by constrained optimization, IEEE Transactions on Pattern Analysis and Machine Intelligence, 12:609-628, 1990.
C. M. Gray, P. König, A. K. Engel, and W. Singer.
Oscillatory
responses in cat visual cortex exhibit inter-columnar synchronization which
reflects global stimulus properties, Nature, 338:334-337, 1989.
S. Grossberg and D. Somers.
Synchronized oscillations during
cooperative feature linking in a cortical model of visual perception,
Neural Networks, 4:453-466, 1991.
A. L. Hodgkin and A. F. Huxley.
A quantitative description of
membrane current and its application to conduction and excitation in nerve,
Journal of Physiology, 117:500-544, 1952.
D. M. Kammen, P. J. Holmes, and C. Koch.
Origin of oscillations
in visual cortex: Feedback versus local coupling, in Models of
Brain Functions, R.M.J. Cotterill, Ed. Cambridge
University Press, Cambridge, England, 273-284, 1989.
Y. Kuramoto.
Cooperative dynamics of oscillator community:
A study based on lattice of rings, Progress of Theoretical Physics Suppl.,
79:223-240, 1984.
J. B. Levitt, T. Yoshioka, J. S.Lund.
Intrinsic cortical
connections in macaque visual area V2: Evidence for interaction between
different functional streams, Journal of Comparative Neurology, 342:551-570, 1994.
S. Löwel and W. Singer.
Selection of intrinsic horizontal
connections in the visual cortex by correlated neuronal activity,
Science, 255:209-212, 1992.
R. Malach, Y. Amir, M. Harel, and A. Grinvald.
Relationship
between intrinsic connections and functional architecture revealed by
optical imaging and in vivo targeted biocytin injections in primate striate
cortex, Proceedings of the National Academy of Sciences USA, 90:10469-10473, 1993.
N. D. Mermin and H. Wagner.
Absence of ferromagnetism or
antiferromagnetism in one- or two-dimensional isotropic Heisenberg models,
Physical Review Letters, 17:1133-1136, 1966.
T. Murata and H. Shimizu.
Oscillatory binocular system and
temporal segmentation of stereoscopic depth surfaces, Biological Cybernetics, 68:381-390, 1992.
U. Ribary, A. A. Ioannides, K. D. Singh, R. Hasson, J. P. R. Bolton,
F. Lado, A. Mogilner, and R. Llinás.
Magnetic field
tomography of coherent thalamocortical 40-Hz oscillations in humans,
Proceedings of the National Academy of Sciences USA, 88:11037-11041, 1991.
H. Sakaguchi, S. Shinomoto, and Y. Kuramoto.
Local and global
self-entrainments in oscillator lattices, Progress of Theoretical Physics,
77:1005-1011, 1987.
S. Sarkar and K. L. Boyer.
Perceptual organization in computer
vision: A review and a proposal for a classificatory structure,
IEEE Transactions on Systems, Man, and Cybernetics, 23:382-399, 1993.
T. B. Schillen and P. König.
Stimulus-dependent assembly
formation of oscillatory responses: II. Desynchronization, Neural Computation, 3:155-166, 1991.
W. Singer.
Synchronization of cortical activity and its putative
role in information processing and learning, Annual Review of Physiology,
55:349-374, 1993.
O. Sporns, G. Tononi, and G. M. Edelman.
Modeling perceptual
grouping and figure-ground segregation by means of active reentrant
connections, Proceedings of the National Academy of Sciences USA, 88:129-133, 1991.
M. Tanifuji, T. Sugiyama, and K. Murase.
Horizontal propagation
of excitation in rat visual cortical slices revealed by optical imaging,
Science, 266:1057-1059, 1994.
D. C. van Essen, C. H. Anderson, and D. J. Felleman.
Information
processing in the primate visual system: An integrated systems perceptive,
Science, 255:419-423, 1992.
C. von der Malsburg.
The correlation theory of brain functions,
Internal Report 81-2, Max-Planck-Institut for Biophysical Chemistry,
Göttingen, FRG, 1981.
D. L. Wang.
Emergent synchrony in locally coupled neural
oscillators, Technical Report OSU-CISRC-12/92-TR36, Department of
Computer and Information Science, The Ohio State University, 1992.
D. L. Wang.
Modeling global synchrony in the visual cortex by locally
coupled neural oscillators Proceedings of the 15th Annual
Conference of the Cognitive Science Society, 1058-1063, 1993.
D. L. Wang and D. Terman. Image segmentation based on
oscillatory correlation, Proceedings of the World Congress on Neural Networks
(WCNN-95), Washington DC, in press.