Stavenga D G, Meglič A, Pirih P, Koshitaka H, Arikawa K, Wehling M F, Belušič G
Computational Physics, Zernike Institute for Advanced Materials, University of Groningen, NL9747AG, Groningen, The Netherlands.
Biotechnical Faculty, University of Ljubljana, Večna pot 111, 1000, Ljubljana, Slovenia.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2017 Jan;203(1):23-33. doi: 10.1007/s00359-016-1131-y. Epub 2016 Nov 21.
The facet lenses of the compound eyes of long-legged flies (Dolichopodidae) feature a striking, interlaced coloration pattern, existing of alternating rows of green-yellow and orange-red reflecting facets, due to dielectric multilayers located distally in the facet lenses (Bernard and Miller. Invest Ophthalmol 7:416-434 (1968). We investigated this phenomenon in the dolichopodid Dolichopus nitidus by applying microspectrophotometry, electron microscopy and optical modeling. The measured narrow-band reflectance spectra, peaking at ~540 and ~590 nm with bandwidth ~105 nm, are well explained by a refractive index oscillating sinusoidally in six periods around a mean value of about 1.44 with amplitude 0.6. The facet lens reflectance spectra are associated with a spectrally restricted, reduced transmittance, which causes modified spectral sensitivities of the underlying photoreceptors. Based on the modeling and electroretinography of the dolichopodid Condylostylus japonicus we conjecture that the green and orange facets narrow the spectral bandwidths of blue and green central photoreceptors, respectively, thus possibly improving color and/or polarization vision.
长足虻(长足虻科)复眼的小眼透镜具有显著的交错着色模式,由绿色 - 黄色和橙红色反射小眼交替排列而成,这是由于小眼透镜远端存在介电多层膜(伯纳德和米勒。《Invest Ophthalmol》7:416 - 434 (1968))。我们通过应用显微分光光度法、电子显微镜和光学建模,对长足虻属的亮长足虻进行了此项现象的研究。测量得到的窄带反射光谱在约540和约590纳米处达到峰值,带宽约105纳米,通过折射率围绕平均值约1.44呈正弦振荡六个周期且振幅为0.6的情况得到了很好的解释。小眼透镜反射光谱与光谱受限、降低的透射率相关,这导致了下层光感受器的光谱敏感性发生改变。基于对日本髭长足虻的建模和视网膜电图,我们推测绿色和橙色小眼分别缩小了蓝色和绿色中央光感受器的光谱带宽,从而可能改善了颜色和/或偏振视觉。