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Neuronal Responses in Visual Area V2 (V2) of Macaque Monkeys with Strabismic Amblyopia

机译:患有斜视性弱视的猕猴视觉区域V2(V2)中的神经元反应。

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摘要

Amblyopia, a developmental disorder of spatial vision, is thought to result from a cascade of cortical deficits over several processing stages beginning at the primary visual cortex (V1). However, beyond V1, little is known about how cortical development limits the visual performance of amblyopic primates. We quantitatively analyzed the monocular and binocular responses of V1 and V2 neurons in a group of strabismic monkeys exhibiting varying depths of amblyopia. Unlike in V1, the relative effectiveness of the affected eye to drive V2 neurons was drastically reduced in the amblyopic monkeys. The spatial resolution and the orientation bias of V2, but not V1, neurons were subnormal for the affected eyes. Binocular suppression was robust in both cortical areas, and the magnitude of suppression in individual monkeys was correlated with the depth of their amblyopia. These results suggest that the reduced functional connections beyond V1 and the subnormal spatial filter properties of V2 neurons might have substantially limited the sensitivity of the amblyopic eyes and that interocular suppression was likely to have played a key role in the observed alterations of V2 responses and the emergence of amblyopia.
机译:弱视是一种空间视力的发育障碍,被认为是由初级视觉皮层(V1)开始的多个加工阶段的皮质缺陷级联引起的。但是,除了V1以外,人们对皮质发育如何限制弱视灵长类动物的视觉表现知之甚少。我们定量分析了一群表现出弱视深度的斜视猴子中V1和V2神经元的单眼和双眼反应。与V1不同,弱视猴子的受感染眼睛驱动V2神经元的相对有效性大大降低。对于受影响的眼睛,V2(而不是V1)神经元的空间分辨率和方向偏差不正常。双眼抑制在两个皮层区域均很强,单个猴子的抑制程度与弱视深度有关。这些结果表明,超出V1的功能连接减少以及V2神经元的超常规空间过滤特性可能大大限制了弱视眼的敏感性,并且眼内抑制很可能在观察到的V2反应改变和眼压中起了关键作用。弱视的出现。

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