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- W2017245783 abstract "Abstract This paper presents a technique for isolating and quantifying the contribution of photomechanical responses to visual adaptation. The technique is developed in the context of the pupillary mechanism that is active in the primary visual cells of the insect eye. Using a feedback-control model to represent the combination of retinular cell and pupil, it is shown that the effect of pupillary movements on retinal illumination can be inferred by analysing an intensity-response function of the pupil. When the technique is applied to the pupils of the butterfly and the fly, the results indicate that, in each case, the pupil decreases retinal illumination by approximately 0.7 log units when the ambient light level is increased from pupillary threshold to a level 2.5 log units higher. The validity of the technique is examined by applying it to the human pupil. The results predict changes of retinal illumination which are in close agreement with those expected on the basis of changes in iris diameter, including the Stiles-Crawford effect. The procedure presented here is simple and can, in principle, be applied to many forms of photomechanical adaptation." @default.
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- W2017245783 modified "2023-10-14" @default.
- W2017245783 title "A technique for estimating the contribution of photomechanical responses to visual adaptation" @default.
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- W2017245783 doi "https://doi.org/10.1016/0042-6989(80)90126-1" @default.
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