首页> 外文期刊>The Journal of Physiology >Transmission of colour and acuity signals by parvocellular cells in marmoset monkeys.
【24h】

Transmission of colour and acuity signals by parvocellular cells in marmoset monkeys.

机译:mar猴中小细胞的颜色和敏锐度信号的传递。

获取原文
获取原文并翻译 | 示例
           

摘要

The red-green axis of colour vision evolved recently in primate evolutionary history. Signals serving red-green colour vision travel together with signals serving spatial vision, in the parvocellular (PC) division of the subcortical visual pathway. However, the question of whether receptive fields of PC pathway cells are specialized to transmit red-green colour signals remains unresolved. We addressed this question in single-cell recordings from the lateral geniculate nucleus of anaesthetized marmosets. Marmosets show a high proportion of dichromatic (red-green colour-blind) individuals, allowing spatial and colour tuning properties of PC cells to be directly compared in dichromatic and trichromatic visual systems. We measured spatial frequency tuning for sine gratings that provided selective stimulation of individual photoreceptor types. We found that in trichromatic marmosets, the foveal visual field representation is dominated by red-green colour-selective PC cells. Colour selectivity of PC cells is reduced at greater eccentricities, but cone inputs to centre and surround are biased to create more selectivity than predicted by a purely 'random wiring' model. Thus, one-to-one connections in the fovea are sufficient, but not necessary, to create colour-selective responses. The distribution of spatial tuning properties for achromatic stimuli shows almost complete overlap between PC cells recorded in dichromatic and trichromatic marmosets. These data indicate that transmission of red-green colour signals has been enabled by centre-surround receptive fields of PC cells, and has not altered the capacity of PC cells to serve high-acuity vision at high stimulus contrast.
机译:彩色视觉的红绿色轴最近在灵长类动物的进化历史中得到了发展。在皮层下视觉通路的细小细胞(PC)区域,提供红绿色视觉的信号与提供空间视觉的信号一起传播。然而,关于PC途径细胞的感受野是否专门用于传输红绿色信号的问题仍未解决。我们在麻醉mar猴的外侧膝状核的单细胞记录中解决了这个问题。 mos猴显示出很大比例的双色(红绿色色盲)个体,从而可以在双色和三色视觉系统中直接比较PC细胞的空间和颜色调节特性。我们测量了正弦光栅的空间频率调谐,该正弦光栅提供了对单个感光体类型的选择性刺激。我们发现,在三色mar猴中,中央凹视野代表处是红绿色的选择性PC细胞。 PC单元的颜色选择性在较大的偏心率下会降低,但对中心和周围的圆锥输入会产生偏差,从而产生比纯“随机布线”模型所预测的更高的选择性。因此,中央凹中的一对一连接足以产生颜色选择响应,但不是必须的。消色差刺激的空间调谐特性分布显示,记录在二色和三色chromatic猴中的PC细胞之间几乎完全重叠。这些数据表明,红绿颜色信号的传输已通过PC细胞的中心周围接收场实现,并且并未改变PC细胞在高刺激对比度下提供高敏锐视力的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号