Whirlpool EV130 E Manual de usuario Pagina 71

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Das visuelle System des Menschen I
trary spectral intensity distributions. In addition, simulated human observers, based
on the CC/EC model, might be useful for automatic color rendering and color man-
agement [26]. Last not least, spatial and temporal extensions [24] of the model can be
helpful in medical diagnostics and therapy, for localizing, quantifying and long-term
monitoring of color vision systems that are affected by illnesses, as, e.g., vascular dis-
eases ]27].
References
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[3] W. Backhaus, A psychophysiological model of color coding and elementary
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[4] D. Jameson, L.M. Hurvich, Some quantitative aspects of an opponent-colors
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[5] W. Backhaus, Measurement and simulation of color sensations, In: Neuronal
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[6] W. Backhaus, Psychophysiological simulations of spatial color vision, In:
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July, 2006, Max Planck Institute for Mathematics in the Sciences, Leipzig".
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[7] M. Livingstone, D.H. Hubel, Segregation of form, colour, movement and
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[8] E. Zrenner, I. Abramov, M. Akita, A. Cowey, M. Livingstone, A. Valberg,
Colour perception - retina to cortex, In: Visual Perception - The
Neurophysiological Foundations, eds. L. Spillmann and J.S. Werner, pp. 163-204,
(Academic, San Diego, 1990)
[9] S.M. Zeki, Color coding in the rhesus monkey prestriate cortex, Brain Res.
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[10] W. Backhaus, Physiological and psychophysical simulations of color vision in
humans and animals, In: Color Vision - Perspectives from Different Disciplines, eds.
W. Backhaus, R. Kliegl and J. S. Werner, pp. 45-77, (De Gruyter, Berlin,
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[11] W. Backhaus,Towards a physiological model of color vision, In: 3
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Forum of
European Neuroscience, 13 - 17 July, 2002, Palais de Congres, Paris, France,
Federation of European Neuroscience Societies (FENS), Abstracts Vol. 1, p. 17.3.,
(FENS, Paris, 2002)
[12] W. Backhaus, Das räumliche Farbensehen des Menschen, In: Farbinfo 2002,
20.-23. 11. 2002, Bundesanstalt für Materialforschung und –prüfung, Berlin,
68
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