首页> 外文期刊>The Journal of Physiology >Transmission of blue (S) cone signals through the primate lateral geniculate nucleus.
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Transmission of blue (S) cone signals through the primate lateral geniculate nucleus.

机译:蓝色(S)视锥细胞信号通过灵长类动物外侧膝状核传输。

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This study concerns the transmission of short-wavelength-sensitive (S) cone signals through the primate dorsal lateral geniculate nucleus. The principal cell classes, magnocellular (MC) and parvocellular (PC), are traditionally segregated into on- and off-subtypes on the basis of the sign of their response to luminance variation. Cells dominated by input from S-cones ('blue-on and blue-off') are less frequently encountered and their properties are less well understood. Here we characterize the spatial and chromatic properties of a large sample of blue-on and blue-off neurons and contrast them with those of PC and MC neurons. The results confirm that blue-on and blue-off cells have larger receptive fields than PC and MC neurons at equivalent eccentricities. Relative to blue-on cells, blue-off cells are less sensitive to S-cone contrast, have larger receptive fields, and show more low-pass spatial frequency tuning. Thus, blue-on and blue-off neurons lack the functional symmetry characteristic of on- and off-subtypes in the MC and PC pathways. The majority of MC and PC cells received no detectible input from S-cones. Where present, input from S-cones tended to provide weak inhibition to PC cells. All cell types showed evidence of a suppressive extra-classical receptive field driven largely or exclusively by ML-cones. These data indicate that S-cone signals are isolated to supply the classical receptive field mechanisms of blue-on and blue-off cells in the LGN, and that the low spatial precision of S-cone vision has origins in both classical and extraclassical receptive field properties of subcortical pathways.
机译:这项研究涉及通过灵长类动物背外侧膝状核的短波敏感(S)锥信号的传输。传统上,主要的细胞类型是大细胞(MC)和细小细胞(PC),根据它们对亮度变化的响应征兆被分为on和off亚型。由S锥输入(“蓝灯亮起”和“蓝灯灭”)控制的细胞较少见,其性质也不太清楚。在这里,我们描述了一个上蓝和下蓝神经元样本的空间和色度特性,并将它们与PC和MC神经元进行了对比。结果证实,在相等的离心率下,上蓝和下蓝细胞比PC和MC神经元具有更大的感受野。相对于蓝灯电池,蓝灯电池对S锥对比度较不敏感,具有较大的接收场,并且显示出更多的低通空间频率调谐。因此,上蓝和下蓝神经元在MC和PC通路中缺乏on和off亚型的功能对称特性。大多数MC和PC单元未收到来自S-锥的可检测输入。当存在时,来自S-锥的输入倾向于对PC细胞提供弱抑制。所有细胞类型均显示出主要或仅由ML锥体驱动的抑制性超经典感受野的证据。这些数据表明,S-cone信号被隔离以提供LGN中蓝开和关蓝细胞的经典接收场机制,并且S-cone视觉的低空间精度源自经典和超经典接收场皮质下通路的性质。

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