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MESOPIC CONTRAST MEASURED WITH A COMPUTATIONAL MODEL OF THE RETINA

机译:与视网膜的计算模型测量的囊缺陷对比度

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In the mesopic range, cones and rods of the retina are simultaneously responsible for visual perception. They do not have the same physiological behaviour, both in their response to ligh and in their temporal comportment. But after the retinal processing, they share the same circuitries to the brain. The aim of this work is to develop a computational model that simulates the physiological mechanisms occurring in retinal cells in mesopic lighting conditions. This computational retina should be able to react to images of visual scenes in the same way as the eye does in front of the real scene. It is built of spatiotemporal filters that mimic the functioning of the retinal layers. In order to validate our approach, this paper compares our results to the results of the new recommended system for mesopic photometry based on visual performance.
机译:在剖视范围内,视网膜的锥体和杆同时负责视觉感知。它们没有相同的生理行为,无论是对Ligh的反应以及他们的时间表征。但在视网膜加工之后,它们与大脑共享相同的电路。这项工作的目的是开发一种计算模型,该计算模型模拟了在中间缺陷条件下视网膜细胞中发生的生理机制。该计算视网膜应该能够以与眼睛在真实场景前面的方式相同的方式对视觉场景的图像作出反应。它由时空滤光器构成,模仿视网膜层的功能。为了验证我们的方法,本文将我们的结果与基于可视性能的中间光度法的新推荐系统的结果进行了比较。

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