Giraldo M A, Yoshioka S, Stavenga D G
Department of Neurobiophysics, University of Groningen, Nijenborgh 4, 9747 AG, Groningen, The Netherlands.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2008 Mar;194(3):201-7. doi: 10.1007/s00359-007-0297-8. Epub 2007 Dec 20.
The angular and spectral reflectance of single scales of five different butterfly species was measured and related to the scale anatomy. The scales of the pierids Pieris rapae and Delias nigrina scatter white light randomly, in close agreement with Lambert's cosine law, which can be well understood from the randomly organized beads on the scale crossribs. The reflectance of the iridescent blue scales of Morpho aega is determined by multilayer structures in the scale ridges, causing diffraction in approximately a plane. The purple scales in the dorsal wing tips of the male Colotis regina act similarly as the Morpho scale in the blue, due to multilayers in the ridges, but the scattering in the red occurs as in the Pieris scale, because the scales contain beads with pigment that does not absorb in the red wavelength range. The green-yellow scales of Urania fulgens backscatter light in a narrow spatial angle, because of a multilayer structure in the scale body.
测量了五种不同蝴蝶物种单个鳞片的角度和光谱反射率,并将其与鳞片解剖结构相关联。粉蝶科的菜粉蝶和黑脉金斑蝶的鳞片随机散射白光,与朗伯余弦定律高度吻合,从鳞片横肋上随机排列的珠子可以很好地理解这一点。大蓝闪蝶的虹彩蓝色鳞片的反射率由鳞片脊中的多层结构决定,导致在近似平面内发生衍射。雄性女王荫蝶翅尖背面的紫色鳞片在蓝色方面的作用与大蓝闪蝶鳞片类似,这是由于脊中有多层结构,但红色光的散射方式与粉蝶的鳞片相同,因为这些鳞片含有在红色波长范围内不吸收的色素珠子。由于鳞片主体中的多层结构,闪蝶的绿黄色鳞片在狭窄的空间角度反向散射光。