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警觉猕猴视野中立体视觉的神经基础。

Neural bases of stereopsis across visual field of the alert macaque monkey.

作者信息

Durand Jean-Baptiste, Celebrini Simona, Trotter Yves

机构信息

Centre de Recherche Cerveau & Cognition, Centre National de la Recherche Scientifique, Université Paul Sabatier, Faculté de Médecine de Rangueil Toulouse 3, France.

出版信息

Cereb Cortex. 2007 Jun;17(6):1260-73. doi: 10.1093/cercor/bhl050. Epub 2006 Aug 14.

Abstract

Left and right retinal images of an object seen by the 2 eyes can occupy slightly disparate horizontal and/or vertical locations. The role of horizontal disparity (HD) in stereoscopic vision is well established, but the functional contribution of vertical disparity (VD) remains unclear. Various psychophysical studies have shown that HD and VD are used differently by the visual system depending on their location in the visual field, whether near the center of gaze or more peripheral. We show this horizontal/vertical distinction at the cellular level in monkey primary visual cortex (area V1). The range of VD encoding is reduced in central but not in the peripheral representation of the visual field. Moreover, neurons respond selectively to particular combinations of both types of disparities depending on the coded orientation as predicted by the disparity energy model. The preferred orientations of neurons near the fovea present a vertical bias that is well suited for stereopsis based on HD selectivity alone. In the periphery, instead, preferred orientations are radially biased, which allows a peripheral detector to convey the same depth signal based on either HD or VD. Such an organization has functional implications in both the perceptual and oculomotor domains.

摘要

两只眼睛看到的物体的左右视网膜图像可能占据略有不同的水平和/或垂直位置。水平视差(HD)在立体视觉中的作用已得到充分证实,但垂直视差(VD)的功能贡献仍不清楚。各种心理物理学研究表明,视觉系统对HD和VD的使用方式因其在视野中的位置而异,无论是靠近注视中心还是更周边的位置。我们在猴子初级视觉皮层(V1区)的细胞水平上展示了这种水平/垂直差异。在视野的中央表征中,VD编码范围减小,但在周边表征中则不然。此外,根据视差能量模型的预测,神经元会根据编码的方向选择性地对两种视差的特定组合做出反应。中央凹附近神经元的偏好方向呈现垂直偏向,这非常适合仅基于HD选择性的立体视觉。相反,在周边,偏好方向呈径向偏向,这使得周边探测器能够基于HD或VD传达相同的深度信号。这种组织在感知和动眼神经领域都具有功能意义。

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