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Spatial distributions of cone inputs to cells of the parvocellular pathway investigated with cone-isolating gratings.

机译:用锥形隔离光栅研究锥细胞输入到细胞通路细胞的空间分布。

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摘要

Receptive fields of midget ganglion cells and parvocellular lateral geniculate nucleus (LGN) neurons show color-opponent responses because they receive antagonistic input from the middle- and long-wavelength sensitive cones. It has been controversial as to whether this opponency can derive from random connectivity; if receptive field centers of cells near the fovea are cone-specific due to midget morphology, this would confer some degree of color opponency even with random cone input to the surround. A simple test of this mixed surround hypothesis is to compare spatial frequency tuning curves for luminance gratings and gratings isolating cone input to the receptive field center. If tuning curves for luminance gratings were bandpass, then with the mixed surround hypothesis tuning curves for gratings isolating the receptive field center cone class should also be bandpass, but to a lesser extent than for luminance. Tuning curves for luminance, chromatic, and cone-isolating gratings were measured in macaque retinal ganglion cells and LGN cells. We defined and measured a bandpass index to compare luminance and center cone-isolating tuning curves. Midget retinal ganglion cells and parvocellular LGN cells had bandpass indices between 0.1 and 1 with luminance gratings, but the index was usually near 1 (meaning low-pass tuning) when the receptive field center cone class alone was modulated. This is strong evidence for a considerable degree of cone-specific input to the surround. A fraction of midget and parvocellular cells showed evidence of incomplete specificity. Fitting the data with receptive field models revealed considerable intercell variability, with indications in some cells of a more complex receptive structure than a simple difference of Gaussians model.
机译:小型神经节细胞和小细胞外侧膝状核(LGN)神经元的感受野显示出颜色对手反应,因为它们从中波长和长波长敏感视锥细胞收到拮抗输入。关于这种对立是否可以源自随机连接一直存在争议。如果中心凹附近的细胞的感受野中心由于侏儒形态而为视锥特异性的,那么即使在视锥周围输入随机视锥,这也会赋予一定程度的颜色反差。对这种混合环绕声假设的简单测试是比较亮度光栅和将视锥输入隔离到接收场中心的光栅的空间频率调谐曲线。如果亮度光栅的调谐曲线是带通的,那么在混合环绕假设的情况下,用于隔离接收场中心锥类的光栅的调谐曲线也应该是带通的,但程度要小于亮度。在猕猴视网膜神经节细胞和LGN细胞中测量了亮度,彩色和锥形隔离光栅的调谐曲线。我们定义并测量了一个带通指数,以比较亮度和中心锥隔离调谐曲线。小型视网膜神经节细胞和小细胞LGN细胞的带通指数在0.1至1之间,带有亮度光栅,但是当仅对视场中心视锥类别进行调制时,该指数通常接近1(意味着低通调谐)。有力的证据表明相当大的锥体特定输入到环绕声。一部分小型和细小细胞显示出不完全特异性的证据。用接受场模型拟合数据显示出很大的细胞间变异性,表明某些细胞中的接受结构比高斯模型的简单差异更为复杂。

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