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腹侧流的同型物。

Metamers of the ventral stream.

机构信息

Center for Neural Science, New York University, New York, New York, USA.

出版信息

Nat Neurosci. 2011 Aug 14;14(9):1195-201. doi: 10.1038/nn.2889.

Abstract

The human capacity to recognize complex visual patterns emerges in a sequence of brain areas known as the ventral stream, beginning with primary visual cortex (V1). We developed a population model for mid-ventral processing, in which nonlinear combinations of V1 responses are averaged in receptive fields that grow with eccentricity. To test the model, we generated novel forms of visual metamers, stimuli that differ physically but look the same. We developed a behavioral protocol that uses metameric stimuli to estimate the receptive field sizes in which the model features are represented. Because receptive field sizes change along the ventral stream, our behavioral results can identify the visual area corresponding to the representation. Measurements in human observers implicate visual area V2, providing a new functional account of neurons in this area. The model also explains deficits of peripheral vision known as crowding, and provides a quantitative framework for assessing the capabilities and limitations of everyday vision.

摘要

人类识别复杂视觉模式的能力出现在一系列被称为腹侧流的大脑区域中,从初级视觉皮层 (V1) 开始。我们开发了一种用于中腹侧处理的群体模型,其中 V1 反应的非线性组合在随离轴距离增大而扩大的感受野中进行平均。为了测试该模型,我们生成了视觉同型物的新形式,这些刺激在物理上有所不同,但看起来相同。我们开发了一种行为协议,该协议使用同型物刺激来估计模型特征所代表的感受野大小。由于感受野大小沿着腹侧流变化,我们的行为结果可以识别出代表的视觉区域。对人类观察者的测量表明,视觉区域 V2 参与其中,为该区域的神经元提供了新的功能解释。该模型还解释了称为拥挤的周边视觉缺陷,并为评估日常视觉的能力和局限性提供了定量框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abbe/3164938/0a5f3a4e2dbc/nihms309528f1.jpg

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