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Core–shell nanospheres behind the blue eyes of the bay scallop Argopecten irradians

机译:海湾扇贝Argopecten irradians蓝眼睛后面的核壳纳米球

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摘要

The bay scallop (Mollusca: Bivalvia) has dozens of iridescent blue eyes that focus light using mirror-based optics. Here, we test the hypothesis that these eyes appear blue because of photonic nanostructures that preferentially scatter short-wavelength light. Using transmission electron microscopy, we found that the epithelial cells covering the eyes of have three distinct layers: an outer layer of microvilli, a middle layer of random close-packed nanospheres and an inner layer of pigment granules. The nanospheres are approximately 180 nm in diameter and consist of electron-dense cores approximately 140 nm in diameter surrounded by less electron-dense shells 20 nm thick. They are packed at a volume density of approximately 60% and energy-dispersive X-ray spectroscopy indicates that they are not mineralized. Optical modelling revealed that the nanospheres are an ideal size for producing angle-weighted scattering that is bright and blue. A comparative perspective supports our hypothesis: epithelial cells from the black eyes of the sea scallop have an outer layer of microvilli and an inner layer of pigment granules but lack a layer of nanospheres between them. We speculate that light-scattering nanospheres help to prevent UV wavelengths from damaging the internal structures of the eyes of and other blue-eyed scallops.
机译:海湾扇贝(Mollusca:Bivalvia)拥有数十只虹彩蓝眼睛,它们使用基于反射镜的光学元件聚焦光。在这里,我们测试了这样的假设:由于优先散射短波长光的光子纳米结构,这些眼睛看起来是蓝色的。使用透射电子显微镜,我们发现覆盖眼睛的上皮细胞具有三个不同的层:微绒毛的外层,随机紧密堆积的纳米球的中间层和色素颗粒的内层。纳米球的直径约为180 nm,由直径约140 nm的电子致密核组成,周围被厚度小于20 nm的电子致密壳包围。它们以大约60%的体积密度堆积,能量色散X射线光谱表明它们未矿化。光学建模表明,纳米球是产生明亮的蓝色角度加权散射的理想尺寸。比较的观点支持了我们的假设:来自海扇贝黑眼睛的上皮细胞具有微绒毛的外层和色素颗粒的内层,但它们之间缺少纳米球层。我们推测,散射光的纳米球有助于防止紫外线波长损坏其他扇贝和蓝眼睛的眼睛的内部结构。

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