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小龙虾背光反射中偏振光定向:行为学与神经生理学研究

Orientation by polarized light in the crayfish dorsal light reflex: behavioral and neurophysiological studies.

作者信息

Glantz Raymon M, Schroeter John P

机构信息

Department of Biochemistry, Rice University, Houston, TX, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2007 Mar;193(3):371-84. doi: 10.1007/s00359-006-0191-9. Epub 2006 Dec 2.

Abstract

In decapod crustaceans, the dorsal light reflex rotates the eyestalk so that the dorsal retina faces the brightest segment of dorsal visual space. Stepwise displacements of white stripes elicit eyestalk rotations in the same direction as that of the stripe. Conversely, stepwise displacements of black stripes on a white background elicit eyestalk rotations in the opposite direction as that of the stripe. The reversal of the response with contrast inversion distinguishes the dorsal light reflex from an optokinetic reflex. When the visual scene is composed of polarized light, segmented by variations in e-vector orientation, displacement of segments containing near vertical e-vectors elicit responses similar to those elicited by a white stripe. Displacement of polarized stripes containing near horizontal e-vectors elicit eyestalk rotations similar to those elicited by a black stripe. The results are consistent with the use of polarized light in orientation. The stimulus conditions described above were also applied to visual interneurons (sustaining fibers) and oculomotor neurons and the results were generally in accord with the behavior. In the neural studies, it was possible to show that responses to polarized stripe displacements are predictable from the receptive field location and the neuron's polarization tuning function.

摘要

在十足目甲壳动物中,背侧光反射会使眼柄转动,从而使背侧视网膜朝向背侧视觉空间中最亮的部分。白色条纹的逐步移动会引发眼柄朝着与条纹相同的方向转动。相反,白色背景上黑色条纹的逐步移动会引发眼柄朝着与条纹相反的方向转动。对比度反转时反应的逆转将背侧光反射与视动反射区分开来。当视觉场景由偏振光组成,通过电场矢量方向的变化进行分割时,包含接近垂直电场矢量的部分的移动会引发与白色条纹引发的反应相似的反应。包含接近水平电场矢量的偏振条纹的移动会引发与黑色条纹引发的反应相似的眼柄转动。这些结果与在定向中使用偏振光一致。上述刺激条件也应用于视觉中间神经元(持续纤维)和动眼神经元,结果总体上与行为相符。在神经学研究中,可以表明对偏振条纹移动的反应可以从感受野位置和神经元的偏振调谐函数预测出来。

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