V. Braitenberg, A note on myeloarchitectonics, The Journal of Comparative Neurology, vol.118, issue.2, p.13872421, 1962.

C. D. Gilbert and T. N. Wiesel, Morphology and intracortical projections of functionally characterised neurones in the cat visual cortex, Nature, vol.280, issue.5718, p.552600, 1979.

R. A. Fisken, L. J. Garey, and T. Powell, The Intrinsic, Association and Commissural Connections of Area 17 of the Visual Cortex, Philosophical Transactions of the Royal Society of London Series B, vol.272, issue.919, p.2937, 1975.

O. D. Creutzfeldt, L. J. Garey, R. Kuroda, and J. R. Wolff, The distribution of degenerating axons after small lesions in the intact and isolated visual cortex of the cat, Experimental Brain Research, vol.27, issue.3, p.880995, 1977.

K. S. Rockland and J. S. Lund, Widespread periodic intrinsic connections in the tree shrew visual cortex, Science, vol.215, issue.4539, p.7063863, 1982.

G. Mitchison and F. Crick, Long axons within the striate cortex: their distribution, orientation, and patterns of connection, Proceedings of the National Academy of Sciences, vol.79, issue.11, pp.3661-3665, 1982.

C. D. Gilbert and T. N. Wiesel, Columnar specificity of intrinsic horizontal and corticocortical connections in cat visual cortex, The Journal of Neuroscience, vol.9, issue.7, p.2746337, 1989.

Z. Kisvárday, E. Toth, M. Rausch, and U. Eysel, Orientation-specific relationship between populations of excitatory and inhibitory lateral connections in the visual cortex of the cat, Cerebral Cortex, vol.7, issue.7, p.9373017, 1997.

K. E. Schmidt, D. S. Kim, W. Singer, T. Bonhoeffer, and S. Löwel, Functional specificity of long-range intrinsic and interhemispheric connections in the visual cortex of strabismic cats, The Journal of Neuroscience, vol.17, issue.14, p.9204930, 1997.

W. H. Bosking, Y. Zhang, B. Schofield, and D. Fitzpatrick, Orientation selectivity and the arrangement of horizontal connections in tree shrew striate cortex, The Journal of Neuroscience, vol.17, issue.6, p.9045738, 1997.

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, vol.90, pp.10469-10473, 1993.

T. Yousef, T. Bonhoeffer, D. S. Kim, U. T. Eysel, . Tth et al., Orientation topography of layer 4 lateral networks revealed by optical imaging in cat visual cortex (area 18), European Journal of Neuroscience, vol.11, issue.12, p.10594655, 1999.

T. Yousef, E. Tóth, M. Rausch, U. T. Eysel, and Z. F. Kisvárday, Topography of orientation centre connections in the primary visual cortex of the cat, NeuroReport, vol.12, issue.8, pp.1693-1699, 2001.

P. Buzás, K. Kovács, A. S. Ferecskó, J. Budd, U. T. Eysel et al., Model-based analysis of excitatory lateral connections in the visual cortex, The Journal of comparative neurology, vol.499, issue.6, p.17072837, 2006.

K. A. Martin, S. Roth, and E. S. Rusch, Superficial layer pyramidal cells communicate heterogeneously between multiple functional domains of cat primary visual cortex, Nature communications, vol.5, 2014.

P. Buzás, U. T. Eysel, P. Adorján, and Z. F. Kisvárday, Axonal topography of cortical basket cells in relation to orientation, direction, and ocular dominance maps, The Journal of comparative neurology, vol.437, issue.3, p.11494255, 2001.

Z. Kisvárday, D. S. Kim, U. Eysel, and T. Bonhoeffer, Relationship Between Lateral Inhibitory Connections and the Topography of the Orientation Map in Cat Visual Cortex, European Journal of Neuroscience, vol.6, issue.10, p.7850026, 1994.

T. Bonhoeffer and A. Grinvald, Iso-orientation domains in cat visual cortex are arranged in pinwheel-like patterns, Nature, vol.353, issue.6343, p.1896085, 1991.

A. Grinvald and R. Hildesheim, VSDI: a new era in functional imaging of cortical dynamics, Nature Reviews Neuroscience, vol.5, issue.11, p.15496865, 2004.

D. Shoham, D. E. Glaser, A. Arieli, T. Kenet, C. Wijnbergen et al., Imaging Cortical Dynamics at High Spatial and Temporal Resolution with Novel Blue Voltage-Sensitive Dyes, Neuron, vol.24, issue.4, p.10624943, 1999.

S. Chemla and F. Chavane, Voltage-sensitive dye imaging: Technique review and models, Journal of Physiology-Paris, vol.104, issue.1-2, pp.40-50, 2010.

S. Chemla, L. Muller, A. Reynaud, S. Takerkart, A. Destexhe et al., Improving voltage-sensitive dye imaging: with a little help from computational approaches, Neurophotonics, vol.4, issue.3, p.28573154, 2017.
URL : https://hal.archives-ouvertes.fr/hal-02008348

D. Sharon, D. Jancke, F. Chavane, S. Na'aman, and A. Grinvald, Cortical response field dynamics in cat visual cortex, Cerebral Cortex, vol.17, issue.12, p.17395608, 2007.

F. Chavane, D. Sharon, D. Jancke, O. Marre, Y. Frégnac et al., Lateral spread of orientation selectivity in V1 is controlled by intracortical cooperativity, Frontiers in Systems Neuroscience, p.21629708, 2011.
URL : https://hal.archives-ouvertes.fr/hal-00635982

V. Bringuier, F. Chavane, L. Glaeser, and Y. Frgnac, Horizontal Propagation of Visual Activity in the Synaptic Integration Field of Area 17 Neurons, Science, vol.283, issue.5402, p.9924031, 1999.

L. Muller, A. Reynaud, F. Chavane, and A. Destexhe, The stimulus-evoked population response in visual cortex of awake monkey is a propagating wave, Nature communications, vol.5, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01055315

X. Huang, Y. M. Elyada, W. H. Bosking, T. Walker, and D. Fitzpatrick, Optogenetic Assessment of Horizontal Interactions in Primary Visual Cortex, The Journal of Neuroscience, vol.34, issue.14, p.24695715, 2014.

J. Alonso and J. Kremkow, F1000Prime Recommendation of Chavane et al, 2011.

J. Alonso and J. Kremkow, F1000Prime Recommendation of Huang et al, 2014.

H. R. Wilson and J. D. Cowan, Excitatory and inhibitory interactions in localized populations of model neurons, Biophysical journal, vol.12, issue.1, p.4332108, 1972.

S. Amari, Dynamics of pattern formation in lateral-inhibition type neural fields, Biological Cybernetics, vol.27, issue.2, p.911931, 1977.

R. Ben-yishai, R. L. Bar-or, and H. Sompolinsky, Theory of orientation tuning in visual cortex, Proceedings of the National Academy of Sciences, vol.92, issue.9, p.3844, 1995.

D. Hansel and H. Sompolinsky, Modeling feature selectivity in local cortical circuits. Methods of neuronal modeling, pp.499-567, 1997.

P. C. Bressloff, J. D. Cowan, M. Golubitsky, P. J. Thomas, and M. C. Wiener, Geometric visual hallucinations, Euclidean symmetry and the functional architecture of striate cortex, Philosophical Transactions of the Royal Society of London Series B: Biological Sciences, vol.356, p.11316482, 1407.

P. Bressloff, Spontaneous symmetry breaking in self-organizing neural fields, Biological Cybernetics, vol.93, p.16193306, 2005.

S. Coombes, Waves, bumps, and patterns in neural field theories, Biological Cybernetics, vol.93, p.16059785, 2005.

P. C. Bressloff, Spatiotemporal dynamics of continuum neural fields, vol.45, p.33001, 2012.

F. Grimbert, Mesoscopic models of cortical structures, 2008.

V. Markounikau, C. Igel, A. Grinvald, and D. Jancke, A dynamic neural field model of mesoscopic cortical activity captured with voltage-sensitive dye imaging, PLOS Computational Biology, vol.6, issue.9, p.20838578, 2010.

S. Chemla and F. Chavane, A biophysical cortical column model to study the multi-component origin of the VSDI signal, NeuroImage, vol.53, issue.2, p.20600993, 2010.

J. Rankin, D. Avitabile, J. Baladron, F. G. Lloyd, and D. J. , Continuation of localized coherent structures in nonlocal neural field equations, SIAM Journal on Scientific Computing, vol.36, issue.1, pp.70-93, 2014.

C. R. Laing, W. C. Troy, B. Gutkin, and G. B. Ermentrout, Multiple bumps in a neuronal model of working memory, SIAM Journal on Applied Mathematics, vol.63, issue.1, pp.62-97, 2002.
URL : https://hal.archives-ouvertes.fr/hal-01686445

G. Faye, J. Rankin, and P. Chossat, Localized states in an unbounded neural field equation with smooth firing rate function: a multi-parameter analysis, Journal of mathematical biology, vol.66, issue.6, p.22526840, 2013.
URL : https://hal.archives-ouvertes.fr/hal-00665464

C. R. Laing and W. C. Troy, PDE methods for nonlocal models, SIAM Journal on Applied Dynamical Systems, vol.2, issue.3, pp.487-516, 2003.

G. Faye, J. Rankin, and D. J. Lloyd, Localized radial bumps of a neural field equation on the Euclidean plane and the Poincaré disc, Nonlinearity, vol.26, issue.2, p.437, 2013.

M. Kaschube, M. Schnabel, S. Löwel, D. M. Coppola, L. E. White et al., Universality in the evolution of orientation columns in the visual cortex, Science, vol.330, issue.6007, p.21051599, 2010.

D. H. Hubel and T. N. Wiesel, Uniformity of monkey striate cortex: a parallel relationship between field size, scatter, and magnification factor, Journal of Comparative Neurology, vol.158, issue.3, p.4436457, 1974.

M. Hübener, D. Shoham, A. Grinvald, and T. Bonhoeffer, Spatial Relationships among Three Columnar Systems in Cat Area 17, The Journal of Neuroscience, vol.17, issue.23, p.9364073, 1997.

A. Shmuel and A. Grinvald, Functional Organization for Direction of Motion and Its Relationship to Orientation Maps in Cat Area 18, Journal of Neuroscience, vol.16, issue.21, p.8824332, 1996.

V. B. Mountcastle, Modality and topographic properties of single neurons of cat's somatic sensory cortex, Journal of Neurophysiology, vol.20, issue.4, p.13439410, 1957.

D. H. Hubel and T. N. Wiesel, Receptive fields and functional architecture of monkey striate cortex, The Journal of Physiology, vol.195, issue.1, p.4966457, 1968.

D. H. Hubel and T. N. Wiesel, Ferrier lecture: Functional architecture of macaque monkey visual cortex. Proceedings of the, Royal Society of London B: Biological Sciences, vol.198, p.20635, 1130.

S. Tanaka, M. Miyashita, and J. Ribot, Roles of visual experience and intrinsic mechanism in the activitydependent self-organization of orientation maps: theory and experiment, Neural networks, vol.17, issue.8, p.15555871, 2004.

K. Albus, A quantitative study of the projection area of the central and the paracentral visual field in area 17 of the cat, Experimental Brain Research, vol.24, issue.2, p.1218549, 1975.

E. Niebur and F. Wörgötter, Design principles of columnar organization in visual cortex, Neural Computation, vol.6, issue.4, pp.602-614, 1994.

F. Wolf, Symmetry, multistability, and long-range interactions in brain development, Physical Review Letters, vol.95, p.16384113, 1920.

J. Stevens, J. S. Law, J. Antolík, and J. A. Bednar, Mechanisms for stable, robust, and adaptive development of orientation maps in the primary visual cortex, The Journal of Neuroscience, vol.33, issue.40, p.24089483, 2013.

W. Keil, M. Kaschube, M. Schnabel, Z. F. Kisvarday, S. Lwel et al., Universality in the Evolution of Orientation Columns in the Visual Cortex, Science, vol.336, issue.6080, pp.413-413, 2012.

M. Schottdorf, W. Keil, D. Coppola, L. E. White, and F. Wolf, Random Wiring, Ganglion Cell Mosaics, and the Functional Architecture of the Visual Cortex, PLOS Computational Biology, vol.11, issue.11, p.26575467, 2015.

P. L. Gabbott and P. Somogyi, Quantitative distribution of GABA-immunoreactive neurons in the visual cortex (area 17) of the cat, Experimental Brain Research, vol.61, issue.2, p.3005016, 1986.

S. H. Hendry, H. D. Schwark, E. G. Jones, and J. Yan, Numbers and proportions of GABA-immunoreactive neurons in different areas of monkey cerebral cortex, Journal of Neuroscience, vol.7, issue.5, p.3033170, 1987.

G. G. Blasdel, Orientation selectivity, preference, and continuity in monkey striate cortex, The Journal of Neuroscience, vol.12, issue.8, p.1322982, 1992.

K. Naka and W. Rushton, S-potentials from colour units in the retina of fish (Cyprinidae), The Journal of Physiology, vol.185, issue.3, p.5918058, 1966.

G. Sclar, J. Maunsell, and L. P. , Coding of image contrast in central visual pathways of the macaque monkey, Vision Research, vol.30, issue.1, p.2321355, 1990.

F. Karube and Z. F. Kisvárday, Axon topography of layer IV spiny cells to orientation map in the cat primary visual cortex (area 18), Cerebral Cortex, vol.21, issue.6, p.21062952, 2011.

A. M. Sillito, The contribution of inhibitory mechanisms to the receptive field properties of neurones in the striate cortex of the cat, The Journal of Physiology, vol.250, issue.2, p.1177144, 1975.

J. M. Crook and U. T. Eysel, GABA-induced inactivation of functionally characterized sites in cat visual cortex (area 18): effects on orientation tuning, Journal of Neuroscience, vol.12, issue.5, p.1578272, 1992.

J. M. Crook, Z. F. Kisvrday, and U. T. Eysel, Evidence for a contribution of lateral inhibition to orientation tuning and direction selectivity in cat visual cortex: reversible inactivation of functionally characterized sites combined with neuroanatomical tracing techniques, European Journal of Neuroscience, vol.10, issue.6, p.9753093, 1998.

A. J. Trevelyan, D. Sussillo, B. O. Watson, and R. Yuste, Modular Propagation of Epileptiform Activity: Evidence for an Inhibitory Veto in Neocortex, Journal of Neuroscience, vol.26, issue.48, p.17135406, 2006.

A. J. Trevelyan, D. Sussillo, and R. Yuste, Feedforward Inhibition Contributes to the Control of Epileptiform Propagation Speed, Journal of Neuroscience, vol.27, issue.13, p.17392454, 2007.

S. Chemla and F. Chavane, Effects of GABAA kinetics on cortical population activity: computational studies and physiological confirmations, Journal of Neurophysiology, vol.115, issue.6, p.26912588, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01460761

D. Avitabile and H. Schmidt, Snakes and ladders in an inhomogeneous neural field model, Physica D: Nonlinear Phenomena, vol.294, pp.24-36, 2015.

B. Blumenfeld, D. Bibitchkov, and M. Tsodyks, Neural network model of the primary visual cortex: From functional architecture to lateral connectivity and back, Journal of Computational Neuroscience, vol.20, issue.2, p.16699843, 2006.

S. B. Paik and D. L. Ringach, Retinal origin of orientation maps in visual cortex, Nature neuroscience, vol.14, issue.7, p.21623365, 2011.

V. Hore, J. B. Troy, and S. J. Eglen, Parasol cell mosaics are unlikely to drive the formation of structured orientation maps in primary visual cortex, Visual Neuroscience, vol.29, issue.6, p.23110776, 2012.

M. Schottdorf, S. J. Eglen, F. Wolf, and K. W. , Can Retinal Ganglion Cell Dipoles Seed Iso-Orientation Domains in the Visual Cortex?, PLOS ONE, vol.9, issue.1, p.24475081, 2014.

D. Mclaughlin, R. Shapley, M. Shelley, and D. J. Wielaard, A neuronal network model of macaque primary visual cortex (V1): Orientation selectivity and dynamics in the input layer 4Ca, Proceedings of the National Academy of Sciences, vol.97, issue.14, pp.8087-8092, 2000.

L. Chariker, R. Shapley, and L. S. Young, Orientation Selectivity from Very Sparse LGN Inputs in a Comprehensive Model of Macaque V1 Cortex, Journal of Neuroscience, vol.36, issue.49, p.27927956, 2016.

N. Voges, A. Schüz, A. Aertsen, and S. Rotter, A modeler's view on the spatial structure of intrinsic horizontal connectivity in the neocortex, Progress in neurobiology, vol.92, issue.3, p.20685378, 2010.

N. Voges and L. Perrinet, Complex dynamics in recurrent cortical networks based on spatially realistic connectivities, Frontiers in Computational Neuroscience, vol.6, p.22787446, 2012.

T. I. Baker and J. D. Cowan, Spontaneous pattern formation and pinning in the primary visual cortex, Journal of physiology, vol.103, issue.1-2, p.19523514, 2009.

G. J. Goodhill and A. Cimponeriu, Analysis of the elastic net model applied to the formation of ocular dominance and orientation columns, Network: Computation in Neural Systems, vol.11, issue.2, pp.153-168, 2000.

W. Keil and F. Wolf, Coverage, continuity, and visual cortical architecture. Neural systems & circuits, vol.1, pp.1-56, 2011.

D. L. Ringach, R. M. Shapley, and M. J. Hawken, Orientation Selectivity in Macaque V1: Diversity and Laminar Dependence, The Journal of Neuroscience, vol.22, issue.13, p.12097515, 2002.

P. Bressloff and S. Carroll, Spatiotemporal Dynamics of Neural Fields on Product Spaces. SIAM Journal on Applied Dynamical Systems, vol.13, issue.4, pp.1620-1653, 2014.

J. Ribot, A. Romagnoni, C. Milleret, D. Bennequin, and J. Touboul, Pinwheel-dipole configuration in cat early visual cortex, NeuroImage, vol.128, p.26707892, 2016.
URL : https://hal.archives-ouvertes.fr/hal-01253408