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Modeling the G-protein signaling of the retina with fractional calculus

机译:用分数演算模拟视网膜的G蛋白信号传导

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The first part of a cone's signal transduction is investigated from an image processing perspective in order to find out what differentiates (human) vision from computer vision. We found that the activity of cone opsins— visual pigments that are activated by the impact of a photon—can be described as an approximation of a fractional integrator of order 0.1–0.2 on frequencies between 1–30 Hz. We explore how this affects the output signal and provide examples of how this can be used for noise reduction and image processing. We also present a simplified model since these processes require excessive computational power for computer vision modeling.
机译:从图像处理的角度研究视锥细胞信号传导的第一部分,以找出将(人类)视觉与计算机视觉区分开的原因。我们发现,视锥蛋白的活动-一种受光子撞击而激活的可视颜料-可以描述为1–30 Hz之间频率的0.1–0.2阶分数积分器的近似值。我们探索了这如何影响输出信号,并提供了如何将其用于降噪和图像处理的示例。我们还提出了一种简化的模型,因为这些过程需要过多的计算能力来进行计算机视觉建模。

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