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Calcitic microlens arrays in Archaster typicus: microstructural evidence for an advanced photoreception system in modern starfish

机译:Archaster typicus中的钙质微透镜阵列:现代海星中先进的光接收系统的微观结构证据

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Recent studies have shown that in some light-sensitive species of an brittlestar (Asteroidea, Echinodermata), the upper surface of the dorsal arm plate bears arrays of hemispherical microstructures which in combination with underlying neural bundles and intraskeletal chromatophores probably function as a compound eye. These calcitic lenses possess superior properties such as light weight, mechanical strength, and very low aberration and birefringence; they display a unique focusing effect, signal enhancement, intensity adjustment, angular selectivity, and photochromic activity. The discovery of these unique optical structures revealed that brittlestar visual system is more sophisticated than initially thought and has inspired active interest toward designing of biomimetic highly tunable optical elements for a wide variety of cutting-edge technological applications. Up to this moment, analogous spherical calcitic lenses have been only reported in a few species of modern brittlestars and starfish. Similar calcitic microlenses have been also observed in the Late Cretaceous fossil echinoderms. Here, we report the structural evidence for the presence of calcitic microlenses in an extant species of starfish Archaster typicus. The close resemblance in microstructure and location between the transparent regions of compact stereom described above and microlenses in the photosensitive brittlestar Ophiocoma wendtii suggests that these regions may be involved with the photoreceptor system in A. typicus.
机译:最近的研究表明,在脆性星的一些光敏感物种(小行星,棘皮动物)中,背臂板的上表面带有半球形的微结构阵列,这些微球形的结构与下面的神经束和骨骼内的染色体组合可能起着复眼的作用。这些钙晶石透镜具有重量轻,机械强度高,像差和双折射极低等优异特性。它们显示出独特的聚焦效果,信号增强,强度调节,角度选择性和光致变色活性。这些独特的光学结构的发现表明,脆星视觉系统比最初设想的要复杂得多,并激发了人们对设计仿生高度可调光学元件的兴趣,这些光学元件可用于各种尖端技术。到目前为止,仅在少数几种现代脆性海星和海星中报道了类似的球状钙质晶状体。在晚白垩世化石棘皮动物中也观察到类似的钙微透镜。在这里,我们报告存在的海星Archaster typicus物种中钙质微透镜的存在的结构证据。上述致密立体图像的透明区域与光敏性脆性星状眼镜蛇的微透镜之间的微观结构和位置极为相似,这表明这些区域可能与伤寒曲霉的感光系统有关。

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