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人类初级视觉皮层(V1)对二阶空间频率具有选择性。

Human primary visual cortex (V1) is selective for second-order spatial frequency.

机构信息

Department of Psychology and Center for Neural Science, New York University, 6 Washington Place, New York, NY 10003, USA.

出版信息

J Neurophysiol. 2011 May;105(5):2121-31. doi: 10.1152/jn.01007.2010. Epub 2011 Feb 23.

Abstract

A variety of cues can differentiate objects from their surrounds. These include "first-order" cues such as luminance modulations and "second-order" cues involving modulations of orientation and contrast. Human sensitivity to first-order modulations is well described by a computational model involving spatially localized filters that are selective for orientation and spatial frequency (SF). It is widely held that first-order modulations are represented by the firing rates of simple and complex cells ("first-order" neurons) in primary visual cortex (V1) that, likewise, have spatially localized receptive fields that are selective for orientation- and SF. Human sensitivity to second-order modulations is well described by a filter-rectify-filter (FRF) model, with first- and second-order filters selective for orientation and SF. However, little is known about how neuronal activity in visual cortex represents second-order modulations. We tested the FRF model by using an functional (f)MRI-adaptation protocol to characterize the selectivity of activity in visual cortex to second-order, orientation-defined gratings of two different SFs. fMRI responses throughout early visual cortex exhibited selective adaptation to these stimuli. The low-SF grating was a more effective adapter than the high-SF grating, incompatible with the FRF model. To explain the results, we extended the FRF model by incorporating normalization, yielding a filter-rectify-normalize-filter model, in which normalization enhances selectivity for second-order SF but only for low spatial frequencies. We conclude that neurons in human visual cortex are selective for second-order SF, that normalization (surround suppression) contributes to this selectivity, and that the selectivity in higher visual areas is simply fed forward from V1.

摘要

各种线索可以将物体与其周围环境区分开来。这些线索包括“一阶”线索,如亮度调制,以及涉及方向和对比度调制的“二阶”线索。人类对一阶调制的敏感性很好地由一个涉及空间局部滤波器的计算模型来描述,这些滤波器对方向和空间频率(SF)具有选择性。人们普遍认为,一阶调制是由初级视觉皮层(V1)中简单和复杂细胞(“一阶”神经元)的放电率来表示的,同样,这些细胞具有对方向和 SF 具有选择性的空间局部感受野。人类对二阶调制的敏感性很好地由滤波器-整流-滤波器(FRF)模型来描述,该模型的一阶和二阶滤波器对方向和 SF 具有选择性。然而,对于视觉皮层中神经元活动如何表示二阶调制,人们知之甚少。我们使用功能(f)MRI 适应协议来测试 FRF 模型,以表征视觉皮层对两种不同 SF 的二阶、方向定义的光栅的活动选择性。早期视觉皮层的 fMRI 反应表现出对这些刺激的选择性适应。低 SF 光栅比高 SF 光栅更有效,与 FRF 模型不兼容。为了解释结果,我们通过引入归一化,扩展了 FRF 模型,得到了滤波器-整流-归一化-滤波器模型,其中归一化增强了对二阶 SF 的选择性,但仅对低空间频率有效。我们得出结论,人类视觉皮层中的神经元对二阶 SF 具有选择性,归一化(周围抑制)有助于这种选择性,并且较高视觉区域的选择性只是从 V1 前馈而来。

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