Subjects were instructed to equate the brightness of two stimuli of different areas presented alternately to the far periphery. The results are closely describable by IA = k (Ricco's Law), indicating that the subjects equated total luminous flux. It is suggested that these results and certain other behavioural and anatomical considerations make it unnecessary to consider flux discrimination a “subcortical” or “lower” visual function as compared with brightness discrimination.
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References
1.
BarlowH. B. (1958). Temporal and spatial summation in human vision at different background intensities.J. Physiol141, 337–50.
2.
BlackwellH. R. (1946). Contrast thresholds of the human eye.J. opt. Soc. Amer.36, 624–43.
3.
von BoninG.BaileyP. (1947). The Neocortex of Macaca MulattoUrbana, Ill.: Illinois Monographs in Medical Sciences.
4.
BoumanM. A. (1950). Peripheral contrast thresholds of the human eye.J. opt. Soc. Amer.40, 825–32.
5.
BrindleyG. S. (1954). The summation areas of human colour-receptive mechanisms at increment threshold.J. Physiol.124, 400–8.
6.
BrouwerB.ZeemanW. P. C. (1926). The projection of the retina in the primary optic neuron in monkeys.Brain49, 1–35.
7.
FultonJ. F. (1949). Physiology of the Nervous SystemNew York.
8.
GregoryR. L.An experimental treatment of vision as an information source and a noisy channel.Information Theory, Third London SymposiumCherryC.London1956.
9.
KlüverH. (1936). An analysis of the effects of removal of the occipital lobes in monkeys.J. Psychol.2, 49–61.
10.
KlüverH. (1941). Visual functions after removal of the occipital lobes.J. Psychol.11, 23–45.
11.
KlüverH. (1942). Functional significance of the geniculostriate system.Visual MechanismsKlüverH.Lancaster, Pa.
12.
KlüverH.Functional differences between the occipital and temporal lobes with special reference to the interrelation of behaviour and extracerebral mechanisms.Cerebral Mechanisms in Behaviour: The Hixon SymposiumJeffressL. A.New York1951.
13.
LashleyK. S. (1931). The mechanism of vision: IV. The cerebral areas necessary for pattern discrimination in the rat.J. comp. Neurol.53, 410–78.
14.
MarquisD. G.HilgardE. R. (1937). Conditioned responses to lights in monkeys after removal of the occipital lobes.Brain60, 1–12.
15.
MorganC. T. (1951). The psychophysiology of learning.Handbook of Experimental PsychologyStevensS. S.New York.
PolyakS. (1933). A contribution to the cerebral representation of the retina.J. comp. Neurol.57, 541–617.
18.
PolyakS. (1941). The RetinaChicago.
19.
PolyakS. (1939). quoted in Crozier.
20.
CrozierW. T.HolwayA. H. (1939). Theory and measurement of visual mechanisms.J. gen. Physiol.22, 341–66.
21.
RiopelleA. J.ChowK. L. (1953). Scotopic area-intensity relations at various retinal locations.J. exp. Psychol.46, 314–8.
22.
SmithK. U. (1937). Visual discrimination in the cat: V. The postoperative effects of removal of the striate cortex upon intensity discrimination.J. genet. Psychol.51, 329–69.
23.
VilterV. (1949). Recherches biométriques sur l'organisation synaptique de la rétine humaine.C. R. Soc. Biol.143, 830–2.
24.
WalkerA. E.FultonJ. F. (1938). The thalamus of the chimpanzee. III. Meta-thalamus, normal structure and cortical connections.Brain61, 250–68.
25.
WillmerE. M. (1950). The relationship between area and threshold in the central fovea for lights of different colours.Quart. J. exp. Psychol.2, 53–9.