【2h】

Symmetry considerations and development of pinwheels in visual maps

机译:视觉地图中风车的对称性考虑因素和发展

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摘要

Neurons in the visual cortex respond best to rod-like stimuli of given orientation. While the preferred orientation varies continuously across most of the cortex, there are prominent pinwheel centers around which all orientations are present. Oriented segments abound in natural images and tend to be collinear; neurons are also more likely to be connected if their preferred orientations are aligned to their topographic separation. These are indications of a reduced symmetry requiring joint rotations of both orientation preference and the underlying topography. We verify that this requirement extends to cortical maps of monkey and cat by direct statistical analysis. Furthermore, analytical arguments and numerical studies indicate that pinwheels are generically stable in evolving field models that couple orientation and topography.
机译:视觉皮层中的神经元对指定方向的棒状刺激反应最佳。尽管首选的方向在大多数皮质中连续变化,但存在突出的风车中心,所有方向都围绕该中心。定向的段在自然图像中比比皆是,并且倾向于共线;如果神经元的首选方向与其拓扑分离对齐,则它们也更有可能被连接。这些迹象表明对称性降低,要求关节同时旋转两个方向偏好和下层地形。通过直接统计分析,我们验证了此要求已扩展到猴子和猫的皮质图。此外,分析论证和数值研究表明,风车在耦合了方向和地形的演化场模型中通常是稳定的。

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