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家蝇光感受器的光谱敏感性:对波导效应和色素浓度的依赖性。

Spectral sensitivity of blowfly photoreceptors: dependence on waveguide effects and pigment concentration.

作者信息

Smakman J G, Stavenga D G

出版信息

Vision Res. 1986;26(7):1019-25. doi: 10.1016/0042-6989(86)90036-2.

Abstract

Spectral and polarization sensitivities of blowfly R1-6 photoreceptor cells were measured by intracellular recordings in cells which differed in visual pigment content. The spectral sensitivity in the visible wavelength range can be quantitatively explained from the absorption spectrum of blowfly visual pigment when the waveguide properties of the rhabdomere are taken into account. The peak wavelengths of absorption and sensitivity spectrum are 490 and 487 nm respectively. At low visual pigment content a sensitizing pigment can enhance the relative U.V. sensitivity from 0.3 to 2.0. In flies with a high visual pigment content selfscreening substantially broadens the visible band of the spectral sensitivity and lowers the relative U.V. sensitivity. The gain of the electrical response appears to be independent of the visual pigment content.

摘要

通过对视觉色素含量不同的家蝇R1-6感光细胞进行细胞内记录,测量了其光谱和偏振敏感度。当考虑到视杆的波导特性时,可见波长范围内的光谱敏感度可以从家蝇视觉色素的吸收光谱中得到定量解释。吸收光谱和敏感度光谱的峰值波长分别为490纳米和487纳米。在低视觉色素含量时,一种敏化色素可将相对紫外线敏感度从0.3提高到2.0。在视觉色素含量高的果蝇中,自屏蔽显著拓宽了光谱敏感度的可见波段,并降低了相对紫外线敏感度。电反应的增益似乎与视觉色素含量无关。

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