scholarly article | Q13442814 |
P356 | DOI | 10.1126/SCIENCE.101.2635.653 |
P698 | PubMed publication ID | 17777531 |
P2093 | author name string | Wald G | |
P433 | issue | 2635 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 653-658 | |
P577 | publication date | 1945-06-01 | |
P1433 | published in | Science | Q192864 |
P1476 | title | HUMAN VISION AND THE SPECTRUM | |
P478 | volume | 101 |
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Q57689257 | Blue-light filtering intraocular lenses (IOLs) for protecting macular health |
Q24188090 | Blue-light filtering intraocular lenses (IOLs) for protecting macular health |
Q33220455 | Brightness matching and flicker photometric data obtained over the full mesopic range |
Q80371061 | Brightness, visual acuity and colour blindness |
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Q59032367 | Eyes of the Histioteuthidae |
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Q80654994 | Further observations on the properties of the central fovea in colour-blind and normal subjects |
Q34608406 | Genetic analyses of visual pigments of the pigeon (Columba livia). |
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Q71813299 | Hue shifts produced by intermittent stimulation |
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Q35671351 | Influence of macular oedema on the measurement of macular pigment optical density |
Q85639140 | Inverse relationship between macular pigment optical density and axial length in Chinese subjects with myopia |
Q41074405 | Iris pigmentation and photopic visual acuity: A preliminary study |
Q36586386 | Krypton Red Laser Photocoagulation of Subretinal Neovascular Membranes Located Within the Foveal Avascular Zone |
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Q69641885 | Latency functions in human vision |
Q39397209 | Lens density measurements by two independent psychophysical techniques. |
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Q30693939 | Lutein, zeaxanthin, and meso-zeaxanthin: The basic and clinical science underlying carotenoid-based nutritional interventions against ocular disease |
Q44071673 | M-cone opsin gene number does not correlate with variation in L/M-cone sensitivity |
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Q37300459 | Macular lutein and zeaxanthin are related to brain lutein and zeaxanthin in primates |
Q33669515 | Macular pigment and age related macular degeneration |
Q34420498 | Macular pigment optical density measured by heterochromatic modulation photometry |
Q46449673 | Matching rod percepts with cone stimuli |
Q36248753 | Measurement and correction of transverse chromatic offsets for multi-wavelength retinal microscopy in the living eye. |
Q33344748 | Measuring macular pigment in vivo |
Q34164319 | Müller cell alterations from long-term ambient fluorescent light exposure in monkeys: light and electron microscopic, fluorescein and lipofuscin study |
Q39711396 | New approaches to ophthalmic electrodiagnosis by retinal oscillatory potential, drug-induced responses from retinal pigment epithelium and cone potential |
Q36290236 | Night vision in the elderly: consequences for seeing through a "blue filtering" intraocular lens |
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Q72961597 | On some aspects of Purkinje's phenomenon |
Q44246672 | On the concept of spectral visual sensitivity. Electroretinographic results on dogs |
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Q44236577 | Optical measurement of human retinal macular pigment and its spatial distribution with age. |
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Q33640933 | Peripheral absolute threshold spectral sensitivity in retinitis pigmentosa |
Q47383940 | Photochromatic Intervals as a Function of Retinal Eccentricity for Stimuli of Different Size*† |
Q48721324 | Photopic and scotopic contributions to the human visually evoked cortical potential |
Q66919858 | Photopic spectral sensitivity of the peripheral retina*† |
Q98613413 | Photoreceptor-Specific Loss of Perifoveal Temporal Contrast Sensitivity in Retinitis Pigmentosa |
Q39603769 | Polarized light retinal photography of a monkey eye |
Q43573003 | Primate Color Vision |
Q34247312 | Problems of peripheral vision |
Q44078386 | Progress in the Recording of Human Retinal and Occipital Potentials* |
Q33887286 | Projection of rods and cones within human visual cortex |
Q50940669 | Punctate sensitivity of the blue-sensitive mechanism |
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Q72317723 | Purkinje Shift in the Human Electroretinogram |
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Q67057781 | Rod-cone interaction in human scotopic vision—III: Rods influence cone increment thresholds |
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Q41830787 | THE CHEMISTRY OF DAYLIGHT VISION. |
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