Parallel colour-opponent pathways to primary visual cortex (original) (raw)
References
Lennie, P. & D'Zmura, M. Mechanisms of color vision. Crit. Rev. Neurobiol.3, 333–400 (1988) CASPubMed Google Scholar
Dacey, D. M. Parallel pathways for spectral coding in primate retina. Annu. Rev. Neurosci.23, 743–775 (2000) ArticleCAS Google Scholar
De Valois, R. L., Cottaris, N. P., Elfar, S. D., Mahon, L. E. & Wilson, J. A. Some transformations of color information from lateral geniculate nucleus to striate cortex. Proc. Natl Acad. Sci. USA97, 4997–5002 (2000) ArticleADSCAS Google Scholar
Dacey, D. M., Peterson, B. B., Robinson, F. R. & Gamlin, P. D. Fireworks in the primate retina. In vitro photodynamics reveals diverse LGN-projecting ganglion cell types. Neuron37, 15–27 (2003) ArticleCAS Google Scholar
Leventhal, A. G., Rodieck, R. W. & Dreher, B. Retinal ganglion cell classes in the Old World monkey: Morphology and central projections. Science213, 1139–1142 (1981) ArticleADSCAS Google Scholar
Michael, C. R. Retinal afferent arborization patterns, dendritic field orientations, and the segregation of function in the lateral geniculate nucleus of the monkey. Proc. Natl Acad. Sci. USA85, 4914–4918 (1988) ArticleADSCAS Google Scholar
Conley, M. & Fitzpatrick, D. Morphology of retinogeniculate axons in the macaque. Vis. Neurosci.2, 287–296 (1989) ArticleCAS Google Scholar
Hubel, D. & Wiesel, T. Laminar and columnar distribution of geniculo-cortical fibers in the macaque monkey. J. Comp. Neurol.146, 421–450 (1972) ArticleCAS Google Scholar
Hendrickson, A. E., Wilson, J. R. & Ogren, M. P. The neuroanatomical organization of pathways between the dorsal lateral geniculate nucleus and visual cortex in Old World and New World primates. J. Comp. Neurol.182, 123–136 (1978) ArticleCAS Google Scholar
Blasdel, G. G. & Lund, J. S. Termination of afferent axons in macaque striate cortex. J. Neurosci.3, 1389–1413 (1983) ArticleCAS Google Scholar
Rodieck, R. W. & Watanabe, M. Survey of the morphology of macaque retinal ganglion cells that project to the pretectum, superior colliculus, and parvicellular laminae of the lateral geniculate nucleus. J. Comp. Neurol.338, 289–303 (1993) ArticleCAS Google Scholar
Martin, P. R., White, A. J., Goodchild, A. K., Wilder, H. D. & Sefton, A. E. Evidence that blue-on cells are part of the third geniculocortical pathway in primates. Eur. J. Neurosci.9, 1536–1541 (1997) ArticleCAS Google Scholar
Hendry, S. H. & Reid, R. C. The koniocellular pathway in primate vision. Annu. Rev. Neurosci.23, 127–153 (2000) ArticleCAS Google Scholar
Hendry, S. H. & Yoshioka, T. A neurochemically distinct third channel in the macaque dorsal lateral geniculate nucleus. Science264, 575–577 (1994) ArticleADSCAS Google Scholar
Wiesel, T. N. & Hubel, D. H. Spatial and chromatic interactions in the lateral geniculate body of the rhesus monkey. J. Neurophysiol.29, 1115–1156 (1966) ArticleCAS Google Scholar
Schiller, P. H. & Malpeli, J. G. Functional specificity of lateral geniculate nucleus laminae of the rhesus monkey. J. Neurophysiol.41, 788–797 (1978) ArticleCAS Google Scholar
Derrington, A. M., Krauskopf, J. & Lennie, P. Chromatic mechanisms in lateral geniculate nucleus of macaque. J. Physiol. (Lond.)357, 241–265 (1984) ArticleCAS Google Scholar
Reid, R. C. & Shapley, R. M. Space and time maps of cone photoreceptor signals in macaque lateral geniculate nucleus. J. Neurosci.22, 6158–6175 (2002) ArticleCAS Google Scholar
Valberg, A., Lee, B. B. & Tigwell, D. A. Neurones with strong inhibitory S-cone inputs in the macaque lateral geniculate nucleus. Vision Res.26, 1061–1064 (1986) ArticleCAS Google Scholar
Ringach, D. L., Sapiro, G. & Shapley, R. A subspace reverse-correlation technique for the study of visual neurons. Vision Res.37, 2455–2464 (1997) ArticleCAS Google Scholar
Dacey, D. M. & Lee, B. B. The ‘blue-on’ opponent pathway in primate retina originates from a distinct bistratified ganglion cell type. Nature367, 731–735 (1994) ArticleADSCAS Google Scholar
Calkins, D. J. & Sterling, P. Evidence that circuits for spatial and color vision segregate at the first retinal synapse. Neuron24, 313–321 (1999) ArticleCAS Google Scholar
Ahmad, K. M., Klug, K., Herr, S., Sterling, P. & Schein, S. Cell density ratios in a foveal patch in macaque retina. Vis. Neurosci.20, 189–209 (2003) Article Google Scholar
Klug, K., Herr, S., Ngo, I. T., Sterling, P. & Schein, S. J. Macaque retina contains an S-cone OFF midget pathway. J. Neurosci.23, 9881–9887 (2003) ArticleCAS Google Scholar
Blasdel, G. G. & Fitzpatrick, D. Physiological organization of layer 4 in macaque striate cortex. J. Neurosci.4, 880–895 (1984) ArticleCAS Google Scholar
Chapman, B., Zahs, K. R. & Stryker, M. P. Relation of cortical cell orientation selectivity to alignment of receptive fields of the geniculocortical afferents that arborize within a single orientation column in ferret visual cortex. J. Neurosci.11, 1347–1358 (1991) ArticleCAS Google Scholar
Stockman, A., MacLeod, D. I. & Johnson, N. E. Spectral sensitivities of the human cones. J. Opt. Soc. Am. A10, 2491–2521 (1993) ArticleADSCAS Google Scholar
Wandell, B. A. Foundations of Vision 413–421 (Sinauer, Sunderland, MA, 1995) Google Scholar
Chichilnisky, E. J. & Baylor, D. A. Receptive-field microstructure of blue-yellow ganglion cells in primate retina. Nature Neurosci.2, 889–893 (1999) ArticleCAS Google Scholar
Chatterjee, S. & Callaway, E. M. S cone contributions to the magnocellular visual pathway in macaque monkey. Neuron35, 1135–1146 (2002) ArticleCAS Google Scholar