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Specificity of M and L Cone Inputs to Receptive Fields in the Parvocellular Pathway: Random Wiring with Functional Bias

机译:M和L锥体输入对细小细胞途径中的感受野的特异性:功能偏向随机布线。

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摘要

Many of the parvocellular pathway (PC) cells in primates show red–green spectral selectivity (cone opponency), but PC ganglion cells in the retina show no anatomical signs of cone selectivity. Here we asked whether responses of PC cells are compatible with “random wiring” of cone inputs. We measured long-wavelength-sensitive (L) and medium-wavelength-sensitive (M) cone inputs to PC receptive fields in the dorsal lateral geniculate of marmosets, using discrete stimuli (apertures and annuli) to achieve functional segregation of center and surround. Receptive fields between the fovea and 30° eccentricity were measured.We show that, in opponent PC cells, the center is dominated by one (L or M) cone type, with normally <20% contribution from the other cone type (high “cone purity”), whereas non-opponent cells have mixed L and M cone inputs to the receptive field center. Furthermore, opponent response strength depends on the overall segregation of L and M cone inputs to center and surround rather than exclusive input from one cone type to either region. These data are consistent with random wiring. The majority of PC cells in both foveal (<8°) and peripheral retina nevertheless show opponent responses. This arises because cone purity in the receptive field surround is at least as high as in the center, and the surround in nearly all opponent PC cells is dominated by the opposite cone type to that which dominates the center. These functional biases increase the proportion of opponent PC cells, but their anatomical basis is unclear.
机译:灵长类中的许多细小细胞途径(PC)细胞显示出红绿色光谱选择性(锥度),但视网膜中的PC神经节细胞没有显示出锥选择性的解剖学迹象。在这里,我们询问PC单元的响应是否与锥体输入的“随机接线”兼容。我们使用离散刺激(孔径和瓣环)实现中心和周围的功能分离,测量了mar猴背侧膝状肌的PC感受野的长波敏感(L)和中波敏感(M)锥输入。测量了中央凹与30°偏心之间的感受野。我们显示,在相对的PC细胞中,中心由一个(L或M)圆锥体类型占主导地位,而另一种圆锥体类型通常小于20%(高“圆锥体”)纯度”),而非对手细胞则将L和M视锥细胞混合输入到感受野中心。此外,对手的响应强度取决于L和M圆锥输入到中心和环绕的整体隔离,而不是从一种圆锥输入到任一区域的唯一输入。这些数据与随机接线一致。然而,中央凹(<8°)和周围视网膜中的大多数PC细胞仍显示出对手的反应。这是由于感受野周围的视锥纯度至少与中心的视锥纯度一样高,并且几乎所有对立的PC细胞的周围视锥与主导中心的视锥类型相反。这些功能性偏见增加了对手PC细胞的比例,但其解剖学基础尚不清楚。

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