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BORDERS OF MULTIPLE VISUAL AREAS IN HUMANS REVEALED BY FUNCTIONAL MAGNETIC RESONANCE IMAGING

机译:功能磁共振成像揭示人类多个视觉区域的边界

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The borders of human visual areas V1, V2, VP, V3, and V4 were precisely and noninvasively determined. Functional magnetic resonance images were recorded during phase-encoded retinal stimulation. This volume data set was then sampled with a cortical surface reconstruction, making it possible to calculate the local visual field sign (mirror image Versus non-mirror image representation). This method automatically and objectively outlines area borders because adjacent areas often have the opposite field sign. Cortical magnification factor curves for striate and extrastriate cortical areas were determined, which showed that human visual areas have a greater emphasis on the center-of-gaze than their counterparts in monkeys. Retinotopically organized visual areas in humans extend anteriorly to overlap several areas previously shown to be activated by written words.
机译:准确且无创地确定了人类视觉区域V1,V2,VP,V3和V4的边界。在相位编码的视网膜刺激过程中记录功能磁共振图像。然后使用皮质表面重建对该体积数据集进行采样,从而可以计算局部视场信号(镜象与非镜象表示)。由于相邻区域通常具有相反的场符号,因此该方法会自动客观地勾勒出区域边界。确定了纹状体和纹状体皮质区域的皮质放大因子曲线,表明人的视觉区域比猴子的视觉区域对视线中心的重视程度更高。人体内视网膜组织的视觉区域向前方延伸,以覆盖先前显示为被文字激活的多个区域。

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