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蜘蛛的视空间截止频率的取向依赖性。

The orientation-dependent visual spatial cut-off frequency in a spider.

机构信息

Department of Neurobiology, Faculty of Life Sciences, University of Vienna, 1090 Wien, Austria.

出版信息

J Exp Biol. 2010 Sep 15;213(Pt 18):3111-7. doi: 10.1242/jeb.041939.

Abstract

Cupiennius salei (Araneae, Ctenidae) has, like most spiders, eight camera-type eyes. The anterior median eyes are called principal eyes and have a movable retina; all of the other eyes are referred to as secondary eyes and are equipped with a reflecting tapetum. The photoreceptors in the secondary eyes are arranged in rows on the tapetum and the inter-receptor angle along such a row is smaller than normal to it. In this study, the vertical and horizontal spatial cut-off frequencies of moving gratings were measured for the posterior median (PM) eyes, and the data were then compared with the anatomical data reported in the literature. Detection of moving objects in the secondary eyes enhances the eye muscle potential frequency in the principal eyes. We thus recorded the eye muscle activity with a telemetric unit as a monitor for motion detection while moving stimuli - sinusoidally modulated bright and dark stripes - were presented to the PM eyes on a computer screen. A significant increase in the eye muscle activity was measured for gratings at an angular wavelength of 2.0 deg in the vertical orientation and of 2.7 deg in the horizontal direction. In the vertical orientation the critical wavelength is twice the inter-receptor angle; in the horizontal orientation the spiders responded to wavelengths that are smaller than twice the corresponding inter-receptor angle. The cut-off frequency seems thus to be limited by the visual field of the photoreceptors rather than the inter-receptor angle. The relative intensity modulations modelled for the two different grating orientations in single photoreceptor cells were in line with our data.

摘要

西里氏狼蛛(蜘蛛目,长脚蛛科)和大多数蜘蛛一样,拥有 8 只相机型眼睛。前中眼称为主眼,具有可移动的视网膜;其他所有的眼睛都称为次眼,并且配备有反射绒毡层。次眼的光感受器沿绒毡层排列成排,并且沿这样的排的感受器之间的角度小于正常角度。在这项研究中,测量了后中眼(PM)的移动光栅的垂直和水平空间截止频率,然后将数据与文献中报道的解剖学数据进行比较。在次眼检测到移动的物体可以增强主眼的眼肌电位频率。因此,我们使用遥测单元记录眼肌活动,作为运动检测的监视器,同时在计算机屏幕上向 PM 眼呈现正弦调制的亮暗条纹的移动刺激。在垂直方向上的角波长为 2.0 度和在水平方向上的角波长为 2.7 度的光栅会引起眼肌活动的显著增加。在垂直方向上,临界波长是感受器之间角度的两倍;在水平方向上,蜘蛛对小于相应感受器之间角度两倍的波长做出响应。因此,截止频率似乎受到光感受器的视野限制,而不是感受器之间角度的限制。对于两个不同光栅方向的单个光感受器细胞建模的相对强度调制与我们的数据一致。

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