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首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Spatial-chromatic interactions in C-type horizontal cells of the turtle (Mauremys caspica) retina.
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Spatial-chromatic interactions in C-type horizontal cells of the turtle (Mauremys caspica) retina.

机译:乌龟(Mauremys caspica)视网膜的C型水平细胞中的空间色相互作用。

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Horizontal cells are second-order retinal neurons that play a key role in spatial information processing. In some cold-blooded vertebrates such as turtles, a subtype of these cells, the chromaticity horizontal cells exhibit color-opponent responses and therefore are considered to be important also for color information processing. To reveal spatial and color interactions, the receptive-field properties of Red/Green and Yellow/Blue chromaticity horizontal cells in the retina of the turtle Mauremys caspica were studied by intracellular recordings from the everted eyecup preparation. We found that the polarity of the photoresponses depended not only upon the wavelength and intensity of the stimulus, but also upon its spatial configuration. Thus, a hyperpolarizing photoresponse that was elicited by full-field stimulation with bright light of wavelength close to the "neutral" one was reversed in polarity to a pure depolarizing one when a small spot or a thin annular pattern were used for stimulation. This finding could not be explained either by different balances between depolarizing and hyperpolarizing inputs to different cells or by stray light that effectively reduced the light intensity in the center of the small spot. Rather, it was found that the depolarizing and hyperpolarizing components were characterized by different receptive-field size and that these differences could account for the dependency of response polarity upon the spatial pattern of the stimulus. These findings indicate that color information processing in turtle C-type horizontal cells is a complex process that depends upon the wavelength and intensity of the light stimulus as well as upon its spatial properties.
机译:水平细胞是二级视网膜神经元,在空间信息处理中起关键作用。在一些冷血脊椎动物,例如海龟,这些细胞的亚型中,色度水平细胞表现出对色反应,因此对于颜色信息处理也很重要。为了揭示空间和颜色的相互作用,研究了外翻眼罩制备物中细胞内的记录,研究了乌龟Mauremys caspica视网膜中红色/绿色和黄色/蓝色色度水平细胞的感受野特性。我们发现,光响应的极性不仅取决于刺激的波长和强度,还取决于其空间配置。因此,当使用小光点或薄的环形图案进行刺激时,由全场刺激所产生的超偏振光响应的极性反转为纯去偏振光,该全偏振光刺激的波长接近“中性”光。不能通过对不同单元的去极化和超极化输入之间的不同平衡或有效降低小点中心光强度的杂散光来解释此发现。相反,发现去极化和超极化分量的特征在于不同的接收场大小,并且这些差异可以解释响应极性对刺激空间模式的依赖性。这些发现表明,乌龟C型水平细胞中的颜色信息处理是一个复杂的过程,取决于光刺激的波长和强度以及其空间特性。

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