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首页> 外文期刊>The Journal of Experimental Biology >Hiding opaque eyes in transparent organisms: a potential role for larval eyeshine in stomatopod crustaceans
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Hiding opaque eyes in transparent organisms: a potential role for larval eyeshine in stomatopod crustaceans

机译:将不透明的眼睛隐藏在透明生物中:幼虫眼皮在气孔足类甲壳动物中的潜在作用

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摘要

Opaque screening pigments are a fundamental requisite for preserving resolution in image-forming eyes. Possession of any type of image-forming eye in a transparent, pelagic animal will thus undermine the ability of that animal to be invisible in the water column. Transparent, pelagic animals must therefore deal with the trade-off between the ability to see and the ability of other animals to see them. Stomatopod larvae, like many transparent crustaceans, possess specialized optics in their compound eyes that minimize the volume of the opaque retina. Though the volumes of these retinas are reduced, their opacity remains conspicuous to an observer. The light reflected from structures overlying the retinas of stomatopod crustacean larval eyes, referred to here as eyeshine, is hypothesized to further reduce the visibility of opaque retinas. Blue or green wavelengths of light are most strongly reflected in stomatopod larval eyeshine, suggesting a putative spectral matching to the light environment against which the larval eyes are viewed. We tested the efficacy of stomatopod crustacean larval eyeshine as an ocular camouflaging mechanism by photographing larvae in their natural light environment and analysing the contrast of eyes with the background light. To test for spectral matching between stomatopod larval eyeshine and the background light environment, we characterized the spectrum of eyeshine and calculated its performance using radiometric measurements collected at the time of each photographic series. These results are the first to demonstrate an operative mirror camouflage matched in both spectrum and radiance to the pelagic background light environment
机译:不透明的筛查颜料是保持成像眼睛分辨率的基本要求。因此,在透明的远洋动物中拥有任何类型的图像形成眼睛都将破坏该动物在水柱中不可见的能力。因此,透明的中上层动物必须处理看动物的能力与其他动物看它们的能力之间的权衡。像许多透明的甲壳类动物一样,食足动物的幼虫在它们的复眼中拥有专门的光学器件,可以最大程度地减少不透明视网膜的体积。尽管这些视网膜的体积减小了,但是它们的不透明性对于观察者仍然很明显。假设从覆盖在气孔足纲甲壳类幼虫眼的视网膜上的结构反射的光(此处称为“眼光”)可进一步降低不透明视网膜的可见性。蓝光或绿光的波长在气孔足类幼虫眼光中最强烈地反射,这表明推测的光谱与观察幼虫眼的光环境匹配。我们通过在自然光环境中拍摄幼虫并分析背景光与眼睛的对比度,测试了气孔足纲甲壳类幼虫眼线素作为眼睛伪装机制的功效。为了测试气孔足幼虫眼影和背景光环境之间的光谱匹配,我们对眼影的光谱进行了表征,并使用在每个摄影系列拍摄时收集的辐射测量来计算其性能。这些结果是第一个证明可操作镜面伪装在光谱和辐射度上均与远洋背景光环境匹配的结果

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