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Hue Selectivity in Human Visual Cortex Revealed by Functional Magnetic Resonance Imaging

机译:功能磁共振成像揭示人类视觉皮层的色相选择性

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The variability of color-selective neurons in human visual cortex is considered more diverse than cone-opponent mechanisms. We addressed this issue by deriving histograms of hue-selective voxels measured using fMRI with a novel stimulation paradigm, where the stimulus hue changed continuously. Despite the large between-subject difference in hue-selective histograms, individual voxels exhibited selectivity for intermediate hues, such as purple, cyan, and orange, in addition to those along cone-opponent axes. In order to rule the possibility out that the selectivity for intermediate hues emerged through spatial summation of activities of neurons selectively responding to cone-opponent signals, we further tested hue-selective adaptations in intermediate directions of cone-opponent axes, by measuring responses to 4 diagonal hues during concurrent adaptation to 1 of the 4 hues. The selective and unidirectional reduction in response to the adapted hue lends supports to our argument that cortical neurons respond selectively to intermediate hues.
机译:人们认为,人视皮层中颜色选择神经元的变异性比锥体对手机制更为多​​样。我们通过推导使用fMRI和新型刺激范例测量的色相选择性体素直方图来解决此问题,其中刺激色相不断变化。尽管色相选择直方图的对象间差异很大,但除了沿圆锥对手轴的色相之外,单个体素还显示出对中间色相(例如紫色,青色和橙色)的选择性。为了排除中间色的选择性是通过选择性响应锥体对手信号的神经元活动的空间总和而出现的,我们通过测量对4的响应,进一步测试了锥体对手轴中间方向上的色相选择适应性。同时适应4种色相中的1种时的对角色。对适应色调的响应的选择性和单向还原有助于我们的论点,即皮层神经元对中间色调有选择性的响应。

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