视网膜感光层的逼真模拟

X. Guan, Hui Wei
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引用次数: 5

摘要

人体感光细胞的特殊分布、采样策略和响应机制对视觉系统具有重要意义。感光细胞层在视觉系统中是连接前后继的纽带,一方面对外界信息进行采样和表征,另一方面对数据进行特定的处理,并将处理后的数据传递给下一层。光感受器细胞在一定程度上决定了信息的数据、准确性、处理时间、能量以及这些因素之间的平衡。随着高分辨率CCD的发展,CCD可以在视网膜中央凹内实现最高的感光细胞密度,为逼真地模拟视网膜感光层提供了坚实的基础。本文基于人体真实物理数据和感光细胞的反应机制,对视网膜感光层进行了精确模拟,有助于揭示视网膜和整个视觉系统的真实机制,也有助于人工视网膜的设计和实现。
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Realistic Simulation on Retina Photoreceptor Layer
The special distribution, sampling strategy and responding mechanism of human photoreceptor cells are significant for visual system. Photoreceptor cells layer is the connection between the preceding and the following in visual system,in one hand, it could sample and represent the outside information, in other hand, it could process the data in its specific way and transfer processed data to following layers. Photoreceptor cells could, in some degree, decide the information data, accuracy, processing time, energy,and further the balance among these factors. With the development of high resolution CCD, the CCD could achieve the highest density of photoreceptor cells in fovea, which provides a solid basis for realistic emulation on retina photoreceptor layer. The paper precisely emulate the retina photoreceptor layer based on human real physical data and response mechanism of photoreceptor cells, which could aid in disclose the real mechanism in retina and whole visual system and also contributes to artificial retina design and implementation.
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