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Orientation Selectivity without Orientation Maps in Visual Cortex of a Highly Visual Mammal

机译:高度视觉哺乳动物的视觉皮层中没有方向图的方向选择性

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摘要

In mammalian neocortex, the orderly arrangement of columns of neurons is thought to be a fundamental organizing principle. In primary visual cortex (V1), neurons respond preferentially to bars of a particular orientation, and, in many mammals, these orientation-selective cells are arranged in a semiregular, smoothly varying map across the cortical surface. Curiously, orientation maps have not been found in rodents or lagomorphs. To explore whether this lack of organization in previously studied rodents could be attributable to low visual acuity, poorly differentiated visual brain areas, or small absolute V1 size, we examined V1 organization of a larger, highly visual rodent, the gray squirrel. Using intrinsic signal optical imaging and single-cell recordings, we found no evidence of an orientation map, suggesting that formation of orientation maps depends on mechanisms not found in rodents. We did find robust orientation tuning of single cells, and this tuning was invariant to stimulus contrast. Therefore, it seems unlikely that orientation maps are important for orientation tuning or its contrast invariance in V1. In vertical electrode penetrations, we found little evidence for columnar organization of orientation-selective neurons and little evidence for local anisotropy of orientation preferences. We conclude that an orderly and columnar arrangement of functional response properties is not a universal characteristic of cortical architecture.
机译:在哺乳动物的新皮层中,神经元列的有序排列被认为是基本的组织原则。在初级视觉皮层(V1)中,神经元优先响应特定方向的条,并且在许多哺乳动物中,这些方向选择细胞排列在整个皮质表面的半规则,平滑变化的图中。奇怪的是,在啮齿动物或兔形体内没有发现方向图。为了探讨以前研究过的啮齿动物缺乏组织性是由于视力低,视觉脑区分化差或绝对的V1大小小,我们研究了较大的,视觉高度明显的啮齿类动物灰松鼠的V1组织。使用内在信号光学成像和单细胞记录,我们没有发现方向图的证据,这表明方向图的形成取决于在啮齿动物中未发现的机制。我们确实发现了单个细胞的稳健的方向调整,并且这种调整对于刺激对比是不变的。因此,方向图对于V1中的方向调整或其对比度不变性似乎不重要。在垂直电极穿刺中,我们几乎没有证据显示定向选择性神经元的柱状组织,也没有发现定向偏好的局部各向异性的证据。我们得出结论,功能响应特性的有序和柱状排列不是皮质结构的普遍特征。

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