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Neural mechanisms underlying binocular fusion and stereopsis: Position vs. phase

机译:双眼融合和立体视的神经机制:位置与相位

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摘要

The visual system utilizes binocular disparity to discriminate the relative depth of objects in space. Since the striate cortex is the first site along the central visual pathways at which signals from the left and right eyes converge onto a single neuron, encoding of binocular disparity is thought to begin in this region. There are two possible mechanisms for encoding binocular disparity through simple cells in the striate cortex: a difference in receptive field (RF) position between the two eyes (RF position disparity) and a difference in RF profile between the two eyes (RF phase disparity). Although there have been studies supporting each of the two encoding mechanisms, both mechanisms have not been examined in a single study. Therefore, the relative roles of the two mechanisms have not been determined. To address this issue, we have mapped left and right eye RFs of simple cells in the cat’s striate cortex using binary m-sequence noise, and then we have estimated RF position and phase disparities. We find that RF position disparities are generally limited to small values that are not sufficient to encode large binocular disparities. In contrast, RF phase disparities cover a wide range of binocular disparities and exhibit dependencies on orientation and spatial frequency in a manner expected for a mechanism that encodes binocular disparity. These results indicate that binocular disparity is mainly encoded through RF phase disparity. However, RF position disparity may play a significant role for cells with high spatial frequency selectivity, which are constrained to small RF phase disparities.
机译:视觉系统利用双目视差来区分物体在空间中的相对深度。由于条纹皮层是沿着中央视觉通路的第一个位置,来自左右眼的信号会在该位置汇聚到单个神经元上,因此认为双眼视差的编码始于该区域。通过纹状皮层中的简单细胞来编码双眼视差有两种可能的机制:两只眼睛之间的感受野(RF)位置的差异(RF位置差异)和两只眼睛之间的RF轮廓的差异(RF相差) 。尽管已经有研究支持这两种编码机制中的每一种,但尚未在单个研究中检查过这两种机制。因此,尚未确定这两种机制的相对作用。为了解决这个问题,我们使用二进制m序列噪声绘制了猫的纹状皮质中简单细胞的左眼和右眼RF,然后估算了RF位置和相位差异。我们发现,RF位置差异通常被限制为不足以编码大双眼差异的较小值。相比之下,RF相位差涵盖了广泛的双目视差,并且以对双目视差进行编码的机制所期望的方式表现出对方向和空间频率的依赖性。这些结果表明,双眼视差主要通过RF相位视差编码。然而,RF位置差异对于具有高空间频率选择性的小区可能起着重要的作用,其被限制为小的RF相位差异。

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