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Local Sensitivity to Stimulus Orientation and Spatial Frequency within the Receptive Fields of Neurons in Visual Area 2 (V2) of Macaque Monkeys

机译:猕猴视觉区域2(V2)中神经元的感受野内对刺激方向和空间频率的局部敏感性。

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摘要

We used dynamic dense noise stimuli and local spectral reverse correlation methods to reveal the local sensitivities of neurons in visual area 2 (V2) of macaque monkeys to orientation and spatial frequency within their receptive fields. This minimized the potentially confounding assumptions that are inherent in stimulus selections. The majority of neurons exhibited a relatively high degree of homogeneity for the preferred orientations and spatial frequencies in the spatial matrix of facilitatory subfields. However, about 20% of all neurons showed maximum orientation differences between neighboring subfields that were greater than 25 deg. The neurons preferring horizontal or vertical orientations showed less inhomogeneity in space than the neurons preferring oblique orientations. Over 50% of all units also exhibited suppressive profiles, and those were more heterogeneous than facilitatory profiles. The preferred orientation and spatial frequency of suppressive profiles differed substantially from those of facilitatory profiles, and the neurons with suppressive subfields had greater orientation selectivity than those without suppressive subfields. The peak suppression occurred with longer delays than the peak facilitation. These results suggest that the receptive field profiles of the majority of V2 neurons reflect the orderly convergence of V1 inputs over space, but that a subset of V2 neurons exhibit more complex response profiles having both suppressive and facilitatory subfields. These V2 neurons with heterogeneous subfield profiles could play an important role in the initial processing of complex stimulus features.
机译:我们使用动态密集噪声刺激和局部频谱反向相关方法来揭示猕猴视觉区域2(V2)中神经元对它们的感受野内的方向和空间频率的局部敏感性。这最小化了刺激选择中固有的潜在混淆假设。大多数神经元在促进性子场的空间矩阵中的首选方向和空间频率表现出相对较高的同质性。但是,所有神经元中约有20%显示相邻子场之间的最大方向差异大于25度。偏好水平或垂直方向的神经元比偏好倾斜方向的神经元显示出更少的空间不均匀性。所有单位中超过50%的单位也表现出抑制特征,并且比促进特征更不均一。抑制性轮廓的优选取向和空间频率与促进性轮廓显着不同,并且具有抑制性子域的神经元比没有抑制性子域的神经元具有更大的取向选择性。峰值抑制发生的时间比峰值促进时间更长。这些结果表明,大多数V2神经元的感受野分布反映了V1输入在空间上的有序收敛,但是一部分V2神经元表现出具有抑制子域和促进子域的更复杂的响应谱。这些具有不同子域轮廓的V2神经元可能在复杂刺激特征的初始处理中起重要作用。

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