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猕猴视网膜中H1水平细胞的感受野结构

Receptive field structure of H1 horizontal cells in macaque monkey retina.

作者信息

Packer Orin S, Dacey Dennis M

机构信息

Department of Biological Structure, University of Washington, Seattle, WA, USA.

出版信息

J Vis. 2002;2(4):272-92. doi: 10.1167/2.4.1.

Abstract

The ganglion cells of primate retina have center-surround receptive fields. A strong candidate for mediating linear surround circuitry is negative feedback from the H1 horizontal cell onto the cone pedicle. We measured the spatial properties of H1 cell receptive fields in the in vitro macaque monkey retina using sinusoidal gratings, spots, and annuli. Spatial tuning curves ranged in shape from smoothly low pass to prominently notched. The tuning curves of approximately 80% of cells could be well described by a sum of two exponentials, giving a prominent central peak superimposed on a broad shallow skirt. The mean diameter of the combined receptive field decreased with eccentricity from 309 micro m at 11 mm to 122 micro m at 4 mm. We propose that the strong narrow field reflects direct synaptic input from the cones overlying the dendritic tree whereas the weak wide field reflects coupled inputs from neighboring H1 cells. Those cells not well fit by a sum of exponentials had tuning curves with additional peaks at higher spatial frequencies that were likely due to undersampling in the cone-H1 network. Unlike other vertebrates, the macaque H1 network is less strongly coupled, has smaller receptive fields, and shows no functional plasticity. Macaque H1 receptive fields are surprisingly small, suggesting a great reduction in electrical coupling. Because the center of the H1 receptive field gets only a small percentage of its total response from the coupled field, the smallest receptive fields are similar in diameter to the dendritic trees. They are probably small enough to form the surrounds of foveal midget cells. The H1 network is compatible with a mixed-surround model of spectral opponency.

摘要

灵长类动物视网膜的神经节细胞具有中心-周边感受野。介导线性周边回路的一个有力候选者是H1水平细胞对锥体细胞蒂的负反馈。我们使用正弦光栅、光点和环形物在体外猕猴视网膜中测量了H1细胞感受野的空间特性。空间调谐曲线的形状从平滑的低通到明显的缺口不等。大约80%的细胞的调谐曲线可以用两个指数的和很好地描述,在一个宽阔的浅裙边上叠加有一个突出的中心峰值。组合感受野的平均直径随着离心率从11毫米处的309微米减小到4毫米处的122微米。我们提出,强烈的窄场反映了覆盖在树突树上的锥体的直接突触输入,而微弱的宽场反映了相邻H1细胞的耦合输入。那些不能用指数和很好拟合的细胞的调谐曲线在较高空间频率处有额外的峰值,这可能是由于锥体-H1网络中的欠采样。与其他脊椎动物不同,猕猴的H1网络耦合较弱,感受野较小,并且没有功能可塑性。猕猴H1感受野小得出奇,表明电耦合大大减少。因为H1感受野的中心仅从耦合场获得其总反应的一小部分,所以最小的感受野直径与树突树相似。它们可能小到足以形成中央凹侏儒细胞的周边。H1网络与光谱拮抗的混合周边模型兼容。

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