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Biological polarized light reflectors in stomatopod crustaceans

机译:气孔足类甲壳动物中的生物偏振光反射器

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Body parts that can reflect highly polarized light have been found in several species of stomatopod crustaceans (mantis shrimps). These polarized light reflectors can be grossly divided into two major types. The first type, usually red or pink in color to the human visual system, is located within an animal's cuticle. Reflectors of the second type, showing iridescent blue, are located beneath the exoskeleton and thus are unaffected by the molt cycle. We used reflection spectropolarimetry and transmission electron microscopy (TEM) to study the reflective properties and the structures that reflect highly polarized light in stomatopods. For the first type of reflector, the degree of polarization usually changes dramatically, from less than 20% to over 70%, with a change in viewing angle. TEM examination indicates that the polarization reflection is generated by multilayer thin-film interference. The second type of reflector, the blue colored ones, reflects highly polarized light to all viewing angles. However, these reflectors show a slight chromatic change with different viewing angles. TEM sections have revealed that streams of oval-shaped vesicles might be responsible for the production of the polarized light reflection. In all the reflectors we have examined so far, the reflected light is always maximally polarized at around 500 nm, which is close to the wavelength best transmitted by sea water. This suggests that the polarized light reflectors found in stomatopods are well adapted to the underwater environment. We also found that most reflectors produce polarized light with a horizontal e-vector. How these polarized light reflectors are used in stomatopod signaling remains unknown.
机译:在几种种类的甲壳纲甲虾(螳螂虾)中发现了可以反射高度偏振光的身体部位。这些偏振光反射器可大致分为两种主要类型。第一种类型,通常是人类视觉系统的红色或粉红色,位于动物的表皮内。第二种类型的反射器呈虹彩蓝色,位于外骨骼下方,因此不受蜕皮周期的影响。我们使用反射光谱极谱法和透射电子显微镜(TEM)来研究气孔足纲动物的反射特性和反射高偏振光的结构。对于第一类反射器,偏振度通常会随着视角的变化而从不到20%急剧变化到超过70%。 TEM检查表明偏振反射是由多层薄膜干涉产生的。第二种反射器是蓝色反射器,它可以将高偏振光反射到所有视角。然而,这些反射器在不同的视角下显示出轻微的色度变化。 TEM切片显示,椭圆形囊泡流可能是产生偏振光反射的原因。到目前为止,在我们检查过的所有反射器中,反射光始终在500 nm左右最大偏振,这与海水最佳透射的波长接近。这表明在脚足类动物中发现的偏振光反射器非常适合水下环境。我们还发现,大多数反射器会产生带有水平e矢量的偏振光。这些偏振光反射器如何用于气孔足的信号传递仍然未知。

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