journal article Oct 01, 1998

Temporal dynamics of chromatic tuning in macaque primary visual cortex

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References
27
[1]
De Valois, R. L. et al. Analysis of response patterns of LGN cells. J. Opt. Soc. Am. 56, 966–977 (1966). 10.1364/josa.56.000966
[2]
Lennie, P. & D'Zmura, M. Mechanisms of color vision. CRC Crit. Rev. Neurobiol. 3, 333–400 (1988).
[3]
Dacey, D. Circuitry for color coding in the primate retina. Proc. Natl Acad. Sci. USA 93, 582–585 (1996). 10.1073/pnas.93.2.582
[4]
Lennie, P. et al. Chromatic mechanisms in striate cortex of macaque. J. Neurosci. 10, 649–669 (1990). 10.1523/jneurosci.10-02-00649.1990
[5]
De Valois, R. L. & De Valois, K. K. Amulti stage color model. Vision Res. 33, 1053–1065 (1993). 10.1016/0042-6989(93)90240-w
[6]
Hartline, H. K. The receptive fields of optic nerve fibers. Am. J. Physiol. 130, 690–699 (1940). 10.1152/ajplegacy.1940.130.4.690
[7]
MacLeod, D. I. A. & Boynton, R. M. Chromaticity diagram showing cone excitation by stimuli of equal luminance. J. Opt. Soc. Am. 69, 1183–1186 (1979). 10.1364/josa.69.001183
[8]
Derrington, A. M. et al. Chromatic mechanisms in the lateral geniculate nucleus of macaque. J.Physiol. (Lond.) 357, 241–265 (1984). 10.1113/jphysiol.1984.sp015499
[9]
de Boer, E. & Kuyper, P. Triggered correlation. IEEE Trans. Biomed. Eng. 15, 169–179 (1968). 10.1109/tbme.1968.4502561
[10]
Dynamics of orientation tuning in macaque primary visual cortex

Dario L. Ringach, Michael J Hawken, Robert Shapley

Nature 1997 10.1038/387281a0
[11]
Reid, R. C. et al. The use of m-sequences in the analysis of visual neurons: linear receptive field properties. Vis. Neurosci. 14, 1015–1027 (1997). 10.1017/s0952523800011743
[12]
Stockman, A. et al. The temporal properties of the human short-wave photoreceptors and their associated pathways. Vision Res. 31, 189–208 (1991). 10.1016/0042-6989(91)90111-h
[13]
Gegenfurtner, K. R. & Hawken, M. J. Temporal and chromatic properties of motion mechanisms. Vision Res. 35, 1547–1563 (1995). 10.1016/0042-6989(94)00264-m
[14]
Rabin, J. et al. Visual evoked potentials in three-dimemsional color space: correlates of spatio-chromatic processing. Vision Res. 34, 2657–2671 (1994). 10.1016/0042-6989(94)90222-4
[15]
Dacey, D. M. & Lee, B. B. The ‘blue-on’ opponent pathways in primate retina originates from a distinct bistratified ganglion cell. Nature 367, 731–735 (1994). 10.1038/367731a0
[16]
Martin, P. R. et al. Evidence that blue-on cells are part of the third geniculocortical pathway in primates. Eur. J. Neurosci. 9, 1536–1541 (1997). 10.1111/j.1460-9568.1997.tb01509.x
[17]
Gielen, C. C. A. M. et al. Reconstruction of cone-system contributions to responses of colour-opponent neurones in monkey lateral geniculate. Biol. Cybern. 44, 211–221 (1982). 10.1007/bf00344277
[18]
Tolhurst, D. J. & Heeger, D. J. Comparison of contrast-normalization and threshold models of the responses of simple cells in cat striate cortex. Vis. Neurosci. 14, 293–309 (1997). 10.1017/s0952523800011433
[19]
Albrecht, D. G. & Geisler, W. S. Motion selectivity and the contrast-response function of simple cells in the visual cortex. Vision Res. 7, 531–546 (1991).
[20]
McCormick, D. A. et al. Comparative electrophysiology of pyramidal and sparsely spiny stellate nuerons of the neocortex. J. Neurophys. 54, 782–806 (1985). 10.1152/jn.1985.54.4.782
[21]
Pugh, M. et al. Computational modeling of orientation tuning dynamics in V1 neurons. Soc. Neurosci. Abstr. 23, 603 (1997).
[22]
de Monasterio, F. M. et al. Staining of blue-sensitive cones of the macaque retina by a fluorescent dye. Science 213, 1278–1281 (1981). 10.1126/science.7268439
[23]
Calkins, D. J. et al. Microcircuitry and mosaic of a blue-yellow ganglion cell in the primate retina. J. Neurosci. 18, 3373–3385 (1998). 10.1523/jneurosci.18-09-03373.1998
[24]
Malpeli, J. G. & Schiller, P. H. Lack of blue off-center cells in the visual system of the monkey. Brain Res. 141, 385–389 (1978). 10.1016/0006-8993(78)90211-1
[25]
Lennie, P. Recent developments in the phsyiology of color vision. Trends Neurosci. 5, 243–248 (1984). 10.1016/s0166-2236(84)80216-7
[26]
De Valois, R. L. et al. Color appearance with and without S-opponent cells. Vision Res. (submitted).
[27]
Hawken, M. J. et al. Laminar organization and contrast sensitivity of direction-selective cells in the striate cortex of the old world monkey. J. Neurosci. 8, 3541–3548 (1988). 10.1523/jneurosci.08-10-03541.1988
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158
Citations
27
References
Details
Published
Oct 01, 1998
Vol/Issue
395(6705)
Pages
896-900
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Cite This Article
Nicolas P. Cottaris, Russell L. De Valois (1998). Temporal dynamics of chromatic tuning in macaque primary visual cortex. Nature, 395(6705), 896-900. https://doi.org/10.1038/27666
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