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首页> 外文期刊>The Journal of Experimental Biology >Giving invertebrates an eye exam: an ophthalmoscope that utilizes the autofluorescence of photoreceptors
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Giving invertebrates an eye exam: an ophthalmoscope that utilizes the autofluorescence of photoreceptors

机译:给予无脊椎动物眼检查:利用感光体的自发荧光的眼镜镜

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One of the most important functional features of eyes is focusing light, as both nearsightedness and farsightedness have major functional implications. Accordingly, refractive errors are frequently assessed in vertebrates, but not in the very small invertebrate eyes. We describe a micro-ophthalmoscope that takes advantage of autofluorescent properties of invertebrate photoreceptors and test the device on the relatively well-understood eyes of jumping spiders and flies. In each case, our measurements confirmed previous findings with a greater degree of accuracy. For example, we could precisely resolve the layering of the anterior median eyes and could map out the extensive retina of the anterior lateral eyes of the spider. Measurements also confirmed that fly ommatidia are focused into infinity, but showed that their focal plane is situated slightly below the receptor surface. In contrast to other approaches, this device does not rely on reflective tapeta and allows for precise optical assessment of diverse invertebrate eyes.
机译:眼睛最重要的功能特征之一是聚焦光的,因为近近的和远光都具有重大的功能影响。因此,经常在脊椎动物中评估屈光误差,但不在非常小的无脊椎动物眼中进行评估。我们描述了一种微型眼镜镜,利用无脊椎动物光感受器的自发性质,并在相对良好理解的跳跃蜘蛛和苍蝇上测试该装置。在每种情况下,我们的测量结果证实了以更大程度的准确度确认了先前的发现。例如,我们可以精确地解析前位中间眼睛的分层,并可以映射蜘蛛的前侧眼的广泛视网膜。测量还证实,飞ommatidia集中于无穷大,但表明其焦平面略低于受体表面。与其他方法相比,该装置不依赖于反射磁带,并且允许精确的光学评估各种无脊椎动物的眼睛。

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