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Chromatic and spatial properties of parvocellular cells in the lateral geniculate nucleus of the marmoset (Callithrix jacchus)

机译:mo(Callithrix jacchus)外侧膝状小核中小细胞的色度和空间特性。

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摘要

The parvocellular (PC) division of the afferent visual pathway is considered to carry neuronal signals which underlie the red—green dimension of colour vision as well as high-resolution spatial vision. In order to understand the origin of these signals, and the way in which they are combined, the responses of PC cells in dichromatic (‘red—green colour-blind’) and trichromatic marmosets were compared. Visual stimuli included coloured and achromatic gratings, and spatially uniform red and green lights presented at varying temporal phases and frequencies.The sensitivity of PC cells to red—green chromatic modulation was found to depend primarily on the spectral separation between the medium- and long-wavelength-sensitive cone pigments (20 or 7 nm) in the two trichromatic marmoset phenotypes studied. The temporal frequency dependence of chromatic sensitivity was consistent with centre—surround interactions. Some evidence for chromatic selectivity was seen in peripheral PC cells. The receptive field dimensions of parvocellular cells were similar in dichromatic and trichromatic animals, but the achromatic contrast sensitivity of cells was slightly higher (by about 30%) in dichromats than in trichromats. These data support the hypothesis that the primary role of the PC is to transmit high-acuity spatial signals, with red—green opponent signals appearing as an additional response dimension in trichromatic animals.
机译:传入视觉通路的小细胞(PC)分区被认为携带了神经元信号,这些信号构成了彩色视觉以及高分辨率空间视觉的红绿色维度的基础。为了了解这些信号的起源以及它们的组合方式,比较了PC细胞在二色(“红-绿盲”)和三色mar猴中的反应。视觉刺激包括有色和无色光栅,以及在不同的时间相位和频率上呈现的空间均匀的红色和绿色光。发现PC细胞对红色-绿色色度调制的敏感性主要取决于中长距离光谱之间的光谱分离两种三色mar猴表型中对波长敏感的锥形色素(20或7 nm)。色敏度的时间频率依赖性与中心-周围相互作用一致。在外围PC细胞中发现了一些颜色选择性的证据。在双色和三色动物中,细小细胞的感受野大小相似,但是在双色动物中,细胞的消色差对比敏感度略高于三色动物(约30%)。这些数据支持以下假设:PC的主要作用是传输高敏度的空间信号,而红三绿的敌手信号则作为三色动物的附加响应维度出现。

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