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From light to optic nerve: optimization of the front end of visual systems

机译:从光到视神经:视觉系统前端的优化

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Abstract: Blindness is nature is fatal. In biology and physiology one finds many situations where nature has obtained neat solutions to problems, solutions that ar every nearly the best possible. Many of the design parameters for the eye are not arbitrarily selected, but are constrained to a narrow range of values by physics and information theory considerations. As Helmholtz mentioned more than a century ago 'the eye has every possible defect that can be found in an optical instrument and even some which are peculiar to itself; but they are all so interacted, that the inexactness of the image which results from their presence very little exceeds, under ordinary conditions of illumination, the limits which are set to the delicacy of sensation by the dimensions of the retinal cones.' Helmholtz was particularly prescient in his reference to cone dimension because, as we will see, many eye properties are completely determined once cone diameter is selected. The ideas presented in this paper are based on the working assumption that the eye does the best possible job within physical limits. This idea originated with Horace Barlow more than 40 years ago. Once excellent reference is the proceedings of a conference organized to honor Barlow's retirement with presentations by his many collaborators over the years. The list includes practically everyone referenced in this paper, which explores the design and optimization of the optics of the eye, retinal transduction and coding of visual data. !30
机译:摘要:盲目是自然是致命的。在生物学和生理学中,人们发现了许多情况,其中大自然获得了对问题的巧妙解决方案,而这些解决方案几乎都是最好的解决方案。眼睛的许多设计参数不是任意选择的,而是由于物理和信息理论的考虑而被限制在较小的值范围内。正如一个多世纪以前的亥姆霍兹所提到的那样,“眼睛有可能在光学仪器中发现的所有可能的缺陷,甚至是某些特有的缺陷。但是它们都如此相互作用,以至于在通常的照明条件下,由它们的存在所导致的图像不精确性几乎没有超过视锥细胞的尺寸所设定的使感觉细腻的极限。亥姆霍兹(Helmholtz)在提及视锥尺寸方面尤为先见,因为正如我们将看到的,一旦选择视锥直径,许多眼的特性就可以完全确定。本文提出的想法是基于这样的工作假设,即眼睛在物理极限内做得最好。这个想法起源于40多年前的贺拉斯·巴洛(Horace Barlow)。过去曾是一次很好的参考,是为纪念巴洛(Barlow)的退休而举行的会议记录,多年来他的许多合作者都发表了演讲。该列表几乎包括本文中引用的每个人,其中探讨了眼睛光学器件,视网膜转导和视觉数据编码的设计和优化。 !30

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