2. ELECTROPHYSIOLOGY OF THE RETINA
57
Witkovsky, P. (1965). The spectral sensitivity of retinal ganglion cells in the carp.
Vision Res. 5, 603-614.
Witkovsky, P. ( 1967). A comparison of ganglion cell and S-potential response properties in carp retina. J. Neurophysiol. 30, 546-561.
Witkovsky, P. (1968). The effect of chromatic adaptation on color sensitivity of the
carp electroretinogram. Vision Res. 8, 823-837.
Wolbarsht, M. L., Wagner, H. G., and MacNichol, E. F. (1961). Receptive fields of
retinal ganglion cells: Extent and spectral sensitivity. I n “The Visual System:
Neurophysiology and Psychophysics” (R. Jung and H. Kornhuber, eds.), pp.
170-177. Springer, Berlin.
Yamada, E., and Ishikawa, T. (1965). Fine structure of the horizontal cells in some
vertebrate retinae. Cold Spring Harbor Symp. Quant. Biol. 30, 383-392.
Young, T. (1802). On the theory of light and colours. Phil. Trans. Roy. SOC. London
92, 12-48.
57
Witkovsky, P. (1965). The spectral sensitivity of retinal ganglion cells in the carp.
Vision Res. 5, 603-614.
Witkovsky, P. ( 1967). A comparison of ganglion cell and S-potential response properties in carp retina. J. Neurophysiol. 30, 546-561.
Witkovsky, P. (1968). The effect of chromatic adaptation on color sensitivity of the
carp electroretinogram. Vision Res. 8, 823-837.
Wolbarsht, M. L., Wagner, H. G., and MacNichol, E. F. (1961). Receptive fields of
retinal ganglion cells: Extent and spectral sensitivity. I n “The Visual System:
Neurophysiology and Psychophysics” (R. Jung and H. Kornhuber, eds.), pp.
170-177. Springer, Berlin.
Yamada, E., and Ishikawa, T. (1965). Fine structure of the horizontal cells in some
vertebrate retinae. Cold Spring Harbor Symp. Quant. Biol. 30, 383-392.
Young, T. (1802). On the theory of light and colours. Phil. Trans. Roy. SOC. London
92, 12-48.
