BarlowH. B. (1953).
Summation and inhibition in the frog's retina. Journal of Physiology,
119: 69–88.
2.
BarlowH. B.BlakemoreC.PettigrewJ. D. (1967).
The neural mechanism of binocular depth discrimination. Journal of Physiology,
193, 327–342.
3.
BarlowH. B.FitzhughR.KufflerS. W. (1957).
Change in organization in the receptive fields of the cat's retina during dark adaptation. Journal of Physiology,
137, 338–335.
4.
BarlowH. B.HillR. M. (1963).
Selective sensitivity to direction of movement in ganglion cells of the rabbit retina. Science,
139, 412–414. https://doi.org/10.1126/science.139.3553.412
5.
De ValoisR. L.SmithC. J.KitaiS. T.KarolyA. J. (1958).
Response of single cells in monkey lateral geniculate nucleus to monochromatic light. Science,
127, 238–239.
6.
FultonJ. F. (1943). Physiology of the nervous system (2nd ed.).
Oxford University Press.
7.
Hubel, D. H., & Wiesel, T. N. (1959). Receptive fields of single neurones in the cat's striate cortex. Journal of Physiology,
148, 574–591.
8.
KufflerS. W. (1953).
Discharge patterns and functional organization of mammalian retina. Journal of Neurophysiology,
16, 37–68.
9.
LettvinJ. Y.MaturanaH. R.McCulloghW. S.PittsW. H. (1959).
What the frog's eye tells the frog's brain. Proceedings of the Institute of Radio Engineering,
47, 1940–1951.
WertheimerM. (1912).
Experimentelle Studien über das Sehen von Bewegung [Experimental studies on how motion is seen]. Zeitschrift Für Psychologie,
61, 161–265.