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首页> 外文期刊>Journal of vision >A formula for human retinal ganglion cell receptive field density as a function of visual field location
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A formula for human retinal ganglion cell receptive field density as a function of visual field location

机译:人类视网膜神经节细胞感受野密度随视野位置变化的公式

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Abstract Abstract: Abstract?? In the human eye, all visual information must traverse the retinal ganglion cells. The most numerous subclass, the midget retinal ganglion cells, are believed to underlie spatial pattern vision. Thus the density of their receptive fields imposes a fundamental limit on the spatial resolution of human vision. This density varies across the retina, declining rapidly with distance from the fovea. Modeling spatial vision of extended or peripheral targets thus requires a quantitative description of midget cell density throughout the visual field. Through an analysis of published data on human retinal topography of cones and ganglion cells, as well as analysis of prior formulas, we have developed a new formula for midget retinal ganglion cell density as a function of position in the monocular or binocular visual field.
机译:摘要摘要:摘要?在人眼中,所有视觉信息都必须穿过视网膜神经节细胞。据信,最多的亚类是侏儒视网膜神经节细胞,是空间模式视觉的基础。因此,它们的感受野的密度对人类视觉的空间分辨率强加了根本的限制。该密度在整个视网膜上变化,随着距中央凹的距离而迅速下降。因此,对扩展目标或外围目标的空间视觉建模需要对整个视野内的小型细胞密度进行定量描述。通过对已发表的有关视锥细胞和神经节细胞的人类视网膜形貌的数据进行分析,以及对现有公式的分析,我们已经开发了一种新的公式来确定侏儒视网膜神经节细胞密度与单眼或双眼视野中位置的关系。

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