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ORIENTATION SELECTIVITY OF THALAMIC INPUT TO SIMPLE CELLS OF CAT VISUAL CORTEX

机译:丘脑输入对CAT视觉皮层简单细胞的方向选择性

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MORE than 30 years after Hubel and Wiesel(1) first described orientation selectivity in the mammalian visual cortex, the mechanism that gives rise to this property is still controversial. Hubel and Wiesel(1) proposed a simple model for the origin of orientation tuning, in which the circularly symmetrical receptive fields of neurons in the lateral geniculate nucleus that excite a cortical simple cell are arranged in rows. Since this model was proposed, several experiments(2-6) and neuronal simulations(7,8) have suggested that the connectivity between the lateral geniculate nucleus and the cortex is not well organized in an orientation-specific fashion, and that orientation tuning arises instead from extensive interactions within the cortex. To test these models we have recorded visually evoked synaptic potentials in simple cells while cooling the cortex(9), which largely inactivates the cortical network, but leaves geniculate synaptic input functional. We report that the orientation tuning of these potentials is almost unaffected by cooling the cortex, in agreement with Hubel and Wiesel's original proposal(1). [References: 30]
机译:在Hubel和Wiesel(1)首次描述哺乳动物视皮层中的方向选择性之后30多年,产生这种特性的机制仍存在争议。 Hubel和Wiesel(1)提出了一个简单的方向调整模型,其中将外侧膝状核中刺激皮层简单细胞的神经元的圆形对称感受野排列成行。自从提出该模型以来,一些实验(2-6)和神经元模拟(7,8)提示,外侧膝状核与皮质之间的连通性没有以特定于方向的方式很好地组织,并且出现了方向调整而是来自皮质内的广泛相互作用。为了测试这些模型,我们在冷却皮质的同时在简单的细胞中记录了视觉诱发的突触电位(9),这在很大程度上使皮质网络失活,但使膝突输入功能。我们报告说,与Hubel和Wiesel的最初建议(1)一致,冷却皮层几乎不会影响这些电位的方向调整。 [参考:30]

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