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Advanced optics in a jellyfish eye

机译:水母眼中的高级光学元件

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Cubozoans, or box jellyfish, differ from all other cnidarians by an active fish-like behaviour and an elaborate sensory apparatus(1,2). Each of the four sides of the animal carries a conspicuous sensory club ( the rhopalium), which has evolved into a bizarre cluster of different eyes(3). Two of the eyes on each rhopalium have long been known to resemble eyes of higher animals, but the function and performance of these eyes have remained unknown(4). Here we show that box-jellyfish lenses contain a finely tuned refractive index gradient producing nearly aberration-free imaging. This demonstrates that even simple animals have been able to evolve the sophisticated visual optics previously known only from a few advanced bilaterian phyla. However, the position of the retina does not coincide with the sharp image, leading to very wide and complex receptive fields in individual photoreceptors. We argue that this may be useful in eyes serving a single visual task. The findings indicate that tailoring of complex receptive fields might have been one of the original driving forces in the evolution of animal lenses.
机译:立方体动物或箱形水母与其他cnidarians的不同之处在于其具有类似鱼的活跃行为和精巧的感觉装置(1,2)。动物的四个侧面各有一个明显的感觉棒(纹状体),它已演变成一双奇怪的,由不同眼睛组成的簇(3)。长期以来,人们都知道每只纹状体上的两只眼睛类似于高等动物的眼睛,但是这些眼睛的功能和性能仍然未知(4)。在这里,我们显示出盒状水母镜片包含微调的折射率梯度,可产生几乎无像差的成像。这表明即使是简单的动物也能够进化出以前仅从一些高级的双语生物门中已知的复杂的视觉光学系统。然而,视网膜的位置与清晰的图像不一致,从而导致各个感光体中非常宽且复杂的感受野。我们认为这可能对执行单个视觉任务的眼睛有用。研究结果表明,复杂的感受野的剪裁可能是动物晶状体进化的原始驱动力之一。

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