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首页> 外文期刊>The Journal of Comparative Neurology >Distribution of rods and cones in the red‐eared turtle retina ( Trachemys scripta elegans Trachemys scripta elegans Trachemys scripta elegans )
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Distribution of rods and cones in the red‐eared turtle retina ( Trachemys scripta elegans Trachemys scripta elegans Trachemys scripta elegans )

机译:在红耳龟视网膜中的杆和锥体分布(Trachemys Scripta Elegans Trachemys Scripta Elegans Trachemys Scripta Elegans)

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Abstract We have identified the photoreceptors of Trachemys scripta elegans , an intensely studied species that is a model for color vision work. To recognize and count the different photoreceptor types, we labeled them with a combination of morphological and immunohistochemistry markers. The counts for the determination of the density of each photoreceptor type were made in wholemount retinas. The percentages found for each cone type were 29, 23, 21, 12, and 6%, respectively, for L (both types), double, M, S, and ultraviolet cones. The cones were found to be organized horizontally in a visual streak, a linear region with a higher density of photoreceptors that ends temporally in the periphery and more centrally in the nasal side. This region of high density of photoreceptors was not symmetrical along its extension; there was a region with conspicuous central density peaks in the temporal area, suggestive of an area centralis. We also observed a dorsoventral asymmetry in photoreceptor density, with greater density in the ventral region. This asymmetry was observed in cones and rods, but it was more pronounced in the rods. Our results corroborate and extend the findings of previous work in the literature describing the retinal photoreceptors of T. s. elegans and their spatial organization. The higher cone density within the visual streak reflects increased spatial resolution and its existence suggests the possibility of binocular vision. It is remarkable that within this region the entire potential for color vision is also present.
机译:摘要我们已经确定了Trachemys Scripta elegans的感光体,这是一个强烈学习的物种,是颜色视觉工作的模型。识别并计算不同的感光体类型,我们用形态和免疫组织化学标记的组合标记它们。确定每个光感受器型密度的计数在形式视网膜中进行。对于L(两种类型),双,M,S和紫外线锥,每个锥体类型的百分比分别为29,23,21,21,12和6%。发现锥体在视觉条纹中水平组织,是具有较高密度的光感受器密度的线性区域,其在周边延时终止,并且在鼻侧更居中。这种高密度的光感受器区域沿其延伸不对称;颞座在颞座中,有一个具有显眼中央密度峰的地区,暗示了一个区域中心。我们还观察到光感受器密度的背络不对称,在腹侧区域的密度更大。在锥体和棒中观察到这种不对称性,但它在杆上更加明显。我们的结果证实并延长了在文献中的先前工作的调查结果,描述了T.S的视网膜光感受器。 elegans及其空间组织。视觉条纹内的较高的锥形密度反映了增加的空间分辨率,其存在表明双目视觉的可能性。在该区域内,在该区域内也存在着整个颜色视觉的潜力。

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