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Subcortical orientation biases explain orientation selectivity of visual cortical cells

机译:皮层下取向偏向解释了视觉皮层细胞的取向选择性

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AbstractThe primary visual cortex of carnivores and primates shows an orderly progression of domains of neurons that are selective to a particular orientation of visual stimuli such as bars and gratings. We recorded from single-thalamic afferent fibers that terminate in these domains to address the issue whether the orientation sensitivity of these fibers could form the basis of the remarkable orientation selectivity exhibited by most cortical cells. We first performed optical imaging of intrinsic signals to obtain a map of orientation domains on the dorsal aspect of the anaesthetized cat's area 17. After confirming using electrophysiological recordings the orientation preferences of single neurons within one or two domains in each animal, we pharmacologically silenced the cortex to leave only the afferent terminals active. The inactivation of cortical neurons was achieved by the superfusion of either kainic acid or muscimol. Responses of single geniculate afferents were then recorded by the use of high impedance electrodes. We found that the orientation preferences of the afferents matched closely with those of the cells in the orientation domains that they terminated in (Pearson's r = 0.633, n = 22, P = 0.002). This suggests a possible subcortical origin for cortical orientation selectivity.
机译:摘要食肉动物和灵长类动物的主要视觉皮层显示出神经元区域的有序发展,这些区域对视觉刺激的特定方向(如条形和格子状)具有选择性。我们记录了终止于这些域的单丘脑传入纤维,以解决这些纤维的定向敏感性是否可以构成大多数皮质细胞所表现出的显着定向选择性的基础的问题。我们首先对内在信号进行光学成像,以获取麻醉猫区17背侧的取向域图。在使用电生理记录确认每只动物中一个或两个域内单个神经元的取向偏好后,我们用药理学沉默了皮层仅使传入末端保持活动状态。皮层神经元的失活是通过海藻酸或麝香酚的融合实现的。然后通过使用高阻抗电极记录单膝状传入的反应。我们发现传入子的方向偏好与它们终止于其中的取向域中的细胞的取向偏好紧密匹配(Pearson's r = 0.633,n = 22,P = 0.002)。这暗示了皮质取向选择性的可能的皮质下起源。

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