Suppr超能文献

立体视觉的神经元机制:视觉皮层中的简单细胞如何编码双眼视差?

Neuronal mechanisms underlying stereopsis: how do simple cells in the visual cortex encode binocular disparity?

作者信息

DeAngelis G C, Ohzawa I, Freeman R D

机构信息

Group in Vision Science, School of Optometry, University of California, Berkeley 94720-2020, USA.

出版信息

Perception. 1995;24(1):3-31. doi: 10.1068/p240003.

Abstract

Binocular neurons in the visual cortex are thought to form the neural substrate for stereoscopic depth perception. How are the receptive fields of these binocular neurons organized to encode the retinal position disparities that arise from binocular parallax? The conventional notion is that the two receptive fields of a binocular neuron have identical shapes, but are spatially offset from the point of retinal correspondence (zero disparity). We consider an alternative disparity-encoding scheme, in which the two receptive fields may differ in shape (or phase), but are centered at corresponding retinal locations. Using a reverse-correlation technique to obtain detailed spatiotemporal receptive-field maps, we provide support for the latter scheme. Specifically, we show that receptive-field profiles for the left and right eyes are matched for cells that are tuned to horizontal orientations of image contours. However, for neurons tuned to vertical orientations, the left and right receptive fields are predominantly dissimilar in shape. These results show that the striate cortex possesses a specialized mechanism for processing vertical contours, which carry the horizontal-disparity information needed for stereopsis. Thus, in a major modification to the traditional notion of the neural basis of stereopsis, we propose that binocular simple cells encode horizontal disparities in terms of phase at multiple spatial scales. Implications of this scheme are discussed with respect to the size-disparity correlation observed in psychophysical studies.

摘要

视觉皮层中的双眼神经元被认为是立体深度感知的神经基础。这些双眼神经元的感受野是如何组织起来对双眼视差引起的视网膜位置差异进行编码的呢?传统观点认为,双眼神经元的两个感受野形状相同,但在视网膜对应点(零视差)处存在空间偏移。我们考虑一种替代的视差编码方案,即两个感受野的形状(或相位)可能不同,但以相应的视网膜位置为中心。通过使用反向相关技术来获得详细的时空感受野图谱,我们为后一种方案提供了支持。具体而言,我们表明,对于调谐到图像轮廓水平方向的细胞,左眼和右眼的感受野轮廓是匹配的。然而,对于调谐到垂直方向的神经元,左眼和右眼的感受野在形状上主要是不同的。这些结果表明,纹状皮层拥有一种专门用于处理垂直轮廓的机制,而垂直轮廓携带了立体视觉所需的水平视差信息。因此,在对视差神经基础传统观念的重大修正中,我们提出双眼简单细胞在多个空间尺度上根据相位对水平视差进行编码。我们将结合心理物理学研究中观察到的大小视差相关性来讨论该方案的意义。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验