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首页> 外文期刊>Proceedings of the IEEE >Stereo, Shading, and Surfaces: Curvature Constraints Couple Neural Computations
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Stereo, Shading, and Surfaces: Curvature Constraints Couple Neural Computations

机译:立体,阴影和曲面:曲率约束耦合神经计算

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摘要

Vision problems are inherently ambiguous: Do abrupt brightness changes correspond to object boundaries? Are smooth intensity changes due to shading or material properties? For stereo: Which point in the left image corresponds to which point in the right one? What is the role of color in visual information processing? To answer these (seemingly different) questions we develop an analogy between the role of orientation in organizing visual cortex and tangents in differential geometry. Machine learning experiments suggest using geometry as a surrogate for high-order statistical interactions. The cortical columnar architecture becomes a bundle structure in geometry. Connection forms within these bundles suggest answers to the above questions, and curvatures emerge in key roles. More generally, our path through these questions suggests an overall strategy for solving the inverse problems of vision: decompose the global problems into networks of smaller ones and then seek constraints from these coupled problems to reduce ambiguity. Neural computations thus amount to satisfying constraints rather than seeking uniform approximations. Even when no global formulation exists one may be able to find localized structures on which ambiguity is minimal; these can then anchor an overall approximation.
机译:视觉问题本质上是模棱两可的:亮度突然变化是否与物体边界相对应?强度是否由于阴影或材料属性而变化?对于立体声:左图像中的哪一点对应于右图像中的哪一点?颜色在视觉信息处理中的作用是什么?为了回答这些(看似不同的)问题,我们在取向在组织视觉皮层中的作用与微分几何中的切线之间建立了一个类比。机器学习实验建议使用几何作为高阶统计交互的替代。皮质柱状结构成为几何形状的束状结构。这些捆绑软件中的连接形式为上述问题提供了答案,并且在关键角色中出现了曲率。更笼统地说,我们解决这些问题的方法提出了解决视觉逆问题的总体策略:将全局问题分解为较小的问题的网络,然后从这些耦合的问题中寻求约束以减少歧义。因此,神经计算等于满足约束条件,而不是寻求统一的近似值。即使不存在全局表述,也可能找到歧义最小的局部结构。然后,这些可以锚定整体近似值。

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