Background light adaptation of the retinal neuronal adaptive system
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Anders Eklund | Ling Wang | Mildred el Azazi | Wachtmeister Lillemor | A. Eklund | M. el Azazi | Ling Wang | Wachtmeister Lillemor
[1] D. G. Green. Light Adaptation in the Rat Retina: Evidence for Two Receptor Mechanisms , 1971, Science.
[2] London,et al. Light, Colour and Vision , 1969 .
[3] L. Wachtmeister,et al. Oscillatory potentials in the retina: what do they reveal , 1998, Progress in Retinal and Eye Research.
[4] S Berman,et al. Retinal damage by light in rats. , 1966, Investigative ophthalmology.
[5] D. Norren,et al. Origin of the oscillatory potentials in the primate retina , 1985, Vision Research.
[6] J. Dowling,et al. Intracellular responses of the Müller (glial) cells of mudpuppy retina: their relation to b-wave of the electroretinogram. , 1970, Journal of neurophysiology.
[7] L. Wachtmeister,et al. The postnatal development of the oscillatory potentials of the electroretinogram II. Photopic characteristics , 1991, Acta ophthalmologica.
[8] W. Rushton. Rhodopsin measurement and dark‐adaptation in a subject deficient in cone vision , 1961, The Journal of physiology.
[9] J. Lebensohn. Light, Colour, and Vision , 1958 .
[10] P. Lachapelle. The human suprathreshold photopic oscillatory potentials: Method of analysis and clinical application , 2005, Documenta Ophthalmologica.
[11] L. Wachtmeister,et al. The postnatal development of the oscillatory potentials of the electroretinogram III. Scotopic characteristics , 1991, Acta ophthalmologica.
[12] S. Molotchnikoff,et al. Temporal relationship between the ERG and geniculate unit activity in rabbit: Influence of background luminance , 1991, Vision Research.
[13] A. Rosenbaum,et al. Loss of electroretinographic oscillatory potentials, optic atrophy, and dysplasia in congenital stationary night blindness. , 1983, American journal of ophthalmology.
[14] W. Stiles,et al. Saturation of the Rod Mechanism of the Retina at High Levels of Stimulation , 1954 .
[15] J. Brunette. The human electroretinogram during dark adaptation. Implicit time and amplitude studies. , 1969, Archives of ophthalmology.
[16] J. Dowling,et al. The proximal negative response and visual adaptation in the skate retina , 1977, The Journal of general physiology.
[17] K. Kristensson,et al. The effect of postnatal exposure to lead on the electroretinogram in young rats , 1987, Acta ophthalmologica.
[18] W. Best. [The human electroretinogram during dark adaptation]. , 1953, Acta ophthalmologica.
[19] G. V. Lith. Simultane bestimmung der elektroretinographischen und sensorischen reizschwelle , 1966 .
[20] G H Jacobs,et al. Reexamination of spectral mechanisms in the rat (Rattus norvegicus). , 1986, Journal of comparative psychology.
[21] Maureen K. Powers,et al. Mechanisms of light adaptation in rat retina , 1982, Vision Research.
[22] G. Trick,et al. Improved electrode for electroretinography. , 1979, Investigative ophthalmology & visual science.
[23] L. Wachtmeister,et al. The postnatal development of the oscillatory potentials of the electroretinogram. V. Relation to the double peaked a‐wave , 1993, Acta ophthalmologica.
[24] P. Algvere,et al. ON THE OSCILLATORY POTENTIALS OF THE HUMAN ELECTRORETINOGRAM IN LIGHT AND DARK ADAPTATION , 1972, Acta ophthalmologica.
[25] P. Brændstrup. ACTA OPHTHALMOLOGICA 50 YEARS , 1972 .
[26] L. Wachtmeister,et al. The postnatal development of the oscillatory potentials of the electroretinogram: I. Basic characteristics , 1990, Acta ophthalmologica.
[27] P. Algvere,et al. Human ERG in response to double flashes of light during the course of dark adaptation: a Fourier analysis of the oscillatory potentials. , 1972, Vision research.
[28] K. Kristensson,et al. Studies on developmental alterations in the electroretinogram in rats after post‐natal exposure to lead , 1985, Acta ophthalmologica.
[29] G. Fishman,et al. Effects of light adaptation on the response characteristics of human oscillatory potentials. , 1991, Electroencephalography and clinical neurophysiology.
[30] P. Gouras,et al. Temporal aspects of the electroretinogram. , 1969, Archives of ophthalmology.
[31] P. Lachapelle,et al. The photopic electroretinogram in congenital stationary night blindness with myopia. , 1983, Investigative ophthalmology & visual science.
[32] J. Dowling,et al. The oscillatory potentials of the mudpuppy retina. , 1978, Investigative ophthalmology & visual science.
[33] A. Fulton,et al. The relation of retinal sensitivity and rhodopsin in developing rat retina. , 1984, Investigative ophthalmology & visual science.
[34] L. Wachtmeister. ON THE OSCILLATORY POTENTIALS OF THE HUMAN ELECTRORETINOGRAM IN LIGHT AND DARK ADAPTATION , 1973, Acta ophthalmologica.
[35] P. Lachapelle,et al. Light adaptation of the human photopic oscillatory potentials: Influence of the length of the dark adaptation period , 2005, Documenta Ophthalmologica.
[36] J. Lovasik,et al. Variability in clinically measured photopic oscillatory potentials , 1989, Documenta Ophthalmologica.
[37] P. Lachapelle. Evidence for an intensity-coding oscillatory potential in the human electroretinogram , 1991, Vision Research.
[38] P. ALGVERE,et al. ON THE OSCILLATORY POTENTIALS OF THE HUMAN ELECTRORETINOGRAM IN LIGHT AND DARK ADAPTATION , 1972, Acta ophthalmologica. Supplementum.
[39] E. Dodt,et al. Dark and light adaptation in pigmented and white rat as measured by electroretinogram threshold. , 1961, Journal of neurophysiology.
[40] John E. Dowling,et al. Neural and Photochemical Mechanisms of Visual Adaptation in the Rat , 1963, The Journal of general physiology.
[41] W. Best. DAS MENSCHLICHE ELEKTRORETINOGRAMM WÄHREND DER DUNKELADAPTATION , 1953 .
[42] W. D. Wright,et al. The spectral sensitivity of the fovea and extrafovea in the Purkinje range , 1943, Proceedings of the Royal Society of London. Series B - Biological Sciences.
[43] L. Wachtmeister. FURTHER STUDIES OF THE CHEMICAL SENSITIVITY OF THE OSCILLATORY POTENTIALS OF THE ELECTRORETINOGRAM (ERG) , 1980 .