2. ELECTROPHYSIOLOGY OF THE RETINA
55
MacNichol, E. F., Wolbarsht, M. L., and Wagner, H. G. (1961). Electrophysiological
evidence for a mechanism of color vision in the goldfish. I n “Light and Life”
(W. D. McElroy and B. Glass, eds.), pp. 795-816. Johns Hopkins Press, Baltimore, Maryland.
Marks, W. B. ( 1965). Visual pigments of single goldfish cones. J. Physiol. ( L o n d o n )
Marks, W. B., and MacNichol, E. F. (1963). Difference spectra of single goldfish
cones. Federation Proc. 22, 2143 (abstr.).
Mitarai, G. (1958). The origin of the so-called cone action potential. Proc. Japan
Acad. 34, 299-304.
Mitarai, G. ( 1960). Determination of ultramicroelectrode tip position in the retina
in relation to S potential. J. Gen. Physiol. 43, Part 2, 95-99.
Mitarai, G., Svaetichin, G., Vallecalle, E., Fatehchand, R., Villegas, J., and Laufer,
M. ( 1961). Glia-neuron interaction and adaptational mechanisms of the retina.
In “The Visual System: Neurophysiology and Psychophysics” ( R. Jung and
H. Kornhuber, eds. ), pp. 463-481. Springer, Berlin.
Motokawa, K., Oikawa, T., Tasaki, K., and Ogawa, T. (1959). The spatial distribution of electric responses to focal illumination of the carp’s retina. Tohoku J.
Exptl. Med. 70, 151-164.
Motokawa, K., Yamashita, E., and Ogawa, T. (1960). Studies on receptive fields of
single units with colored lights. Tohoku J. Exptl. Med. 71, 261-272.
Motokawa, K., Yamashita, E., and Ogawa, T. (1961). Slow potentials and spike
activity of retina. J. Neurophysiol. 24, 101-110.
Murakami, M., and Kaneko, A. (1966). Differentiation of PI11 subcomponents in
cold-blooded vertebrate retinas. Vision Res. 6, 627-636.
Murakami, M., and Sasaki, Y. (1968a). Analysis of spatial distribution of the ERG
components in the carp retina. Japan. J. Physiol. 18, 326-336.
Murakami, M., and Sasaki, Y. (198813). Localization of the ERG components in the
carp retina. Japan. J. Physiol. 18, 337-349.
Naka, K. I., and Rushton, W. A. H. ( 1966a). S-potentials from colour units in the
retina of fish (Cyprinidae). J. Physiol. ( L o n d o n ) 185, 53M55.
Naka, K. I., and Rushton, W. A. H. (1966b)). An attempt to analyse colour reception
by electrophysiology. J. Physiol. ( London) 185, 556-586.
Naka, K. I., and Rushton, W. A. H. ( 1 9 6 6 ~ ) .
S-potentials from luminosity units in
the retina of fish (Cyprinidae). J. Physiol. ( L o n d o n ) 185, 587-599.
Noell, W. K. (1954). The origin of the electroretinogram. Am. J. Ophthulmol. 38,
78-90.
Oikawa, T., Ogawa, T., and Motokawa, K. (1959). Origin of so-called cone action
potential. J . Neurophysiol. 22, 102-11 1.
Orlov, 0. Yu., and Maksiniova, E. hl. (1965). S-potential sources as excitation pools.
Vision Res. 5, 573-582.
Pak, W. L. (1965). Some properties of the early electrical response in the vertebrate
retina. Cold Spring Harbor Symp. Quant. Biol. 30, 493-499.
Pak, Mi. L., and Cone, R. A. (1964). Isolation and identification of the initial peak
of the early receptor potential. Nature 204, 8364338.
Schrodinger, E. ( 1925). Uber das Verhaltnis der Vierfarben- zur Dreifarbentheorie.
Sitzber. Akad. Wiss. W i e n , Math.-Naturw. Kl. Abt. Ila, 134, 471490.
Sjostrand, F. S. (1961). Electron microscopy of the retina. I n “The Structure of
the Eye” (G. K. Smelser, ed.), pp. 1-28. Academic Press, New York.
178, 14-32.
55
MacNichol, E. F., Wolbarsht, M. L., and Wagner, H. G. (1961). Electrophysiological
evidence for a mechanism of color vision in the goldfish. I n “Light and Life”
(W. D. McElroy and B. Glass, eds.), pp. 795-816. Johns Hopkins Press, Baltimore, Maryland.
Marks, W. B. ( 1965). Visual pigments of single goldfish cones. J. Physiol. ( L o n d o n )
Marks, W. B., and MacNichol, E. F. (1963). Difference spectra of single goldfish
cones. Federation Proc. 22, 2143 (abstr.).
Mitarai, G. (1958). The origin of the so-called cone action potential. Proc. Japan
Acad. 34, 299-304.
Mitarai, G. ( 1960). Determination of ultramicroelectrode tip position in the retina
in relation to S potential. J. Gen. Physiol. 43, Part 2, 95-99.
Mitarai, G., Svaetichin, G., Vallecalle, E., Fatehchand, R., Villegas, J., and Laufer,
M. ( 1961). Glia-neuron interaction and adaptational mechanisms of the retina.
In “The Visual System: Neurophysiology and Psychophysics” ( R. Jung and
H. Kornhuber, eds. ), pp. 463-481. Springer, Berlin.
Motokawa, K., Oikawa, T., Tasaki, K., and Ogawa, T. (1959). The spatial distribution of electric responses to focal illumination of the carp’s retina. Tohoku J.
Exptl. Med. 70, 151-164.
Motokawa, K., Yamashita, E., and Ogawa, T. (1960). Studies on receptive fields of
single units with colored lights. Tohoku J. Exptl. Med. 71, 261-272.
Motokawa, K., Yamashita, E., and Ogawa, T. (1961). Slow potentials and spike
activity of retina. J. Neurophysiol. 24, 101-110.
Murakami, M., and Kaneko, A. (1966). Differentiation of PI11 subcomponents in
cold-blooded vertebrate retinas. Vision Res. 6, 627-636.
Murakami, M., and Sasaki, Y. (1968a). Analysis of spatial distribution of the ERG
components in the carp retina. Japan. J. Physiol. 18, 326-336.
Murakami, M., and Sasaki, Y. (198813). Localization of the ERG components in the
carp retina. Japan. J. Physiol. 18, 337-349.
Naka, K. I., and Rushton, W. A. H. ( 1966a). S-potentials from colour units in the
retina of fish (Cyprinidae). J. Physiol. ( L o n d o n ) 185, 53M55.
Naka, K. I., and Rushton, W. A. H. (1966b)). An attempt to analyse colour reception
by electrophysiology. J. Physiol. ( London) 185, 556-586.
Naka, K. I., and Rushton, W. A. H. ( 1 9 6 6 ~ ) .
S-potentials from luminosity units in
the retina of fish (Cyprinidae). J. Physiol. ( L o n d o n ) 185, 587-599.
Noell, W. K. (1954). The origin of the electroretinogram. Am. J. Ophthulmol. 38,
78-90.
Oikawa, T., Ogawa, T., and Motokawa, K. (1959). Origin of so-called cone action
potential. J . Neurophysiol. 22, 102-11 1.
Orlov, 0. Yu., and Maksiniova, E. hl. (1965). S-potential sources as excitation pools.
Vision Res. 5, 573-582.
Pak, W. L. (1965). Some properties of the early electrical response in the vertebrate
retina. Cold Spring Harbor Symp. Quant. Biol. 30, 493-499.
Pak, Mi. L., and Cone, R. A. (1964). Isolation and identification of the initial peak
of the early receptor potential. Nature 204, 8364338.
Schrodinger, E. ( 1925). Uber das Verhaltnis der Vierfarben- zur Dreifarbentheorie.
Sitzber. Akad. Wiss. W i e n , Math.-Naturw. Kl. Abt. Ila, 134, 471490.
Sjostrand, F. S. (1961). Electron microscopy of the retina. I n “The Structure of
the Eye” (G. K. Smelser, ed.), pp. 1-28. Academic Press, New York.
178, 14-32.
