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A neural network model for realizing geometric illusions based on acute-angled expansion

机译:基于锐角展开的实现几何幻觉的神经网络模型

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Recently, the study of geometric illusions has been remarkable in the field of artificial intelligence and computer vision etc., to make the spatial recognition ability of humans clearer and to apply it technologically. In the technological field, it is often supposed that the visual illusion takes place at the retina level to explain the phenomenon by the simple and unified model. However, the possibility of the illusion occurring at the higher visual field, which has been shown by various psychological and physiological studies, cannot be ignored. Recently, the acute-angled expansion recognizing the angle within the crossing lines being different from the actual angle has been reported by psychological studies. It is explained by the lateral inhibition among the orientational neurons in the cerebrum cortex. It is interesting to explain the higher visual field participating in the geometric illusion. In this study, we compose the neural network model that realizes the acute-angled expansion, by lateral inhibition among the orientational cells on the higher visual field. Moreover, we test the model by computer simulation on the intersecting line segments.
机译:近年来,几何幻觉的研究在人工智能和计算机视觉等领域中非常引人注目,以使人们的空间识别能力更加清晰并在技术上得到应用。在技​​术领域中,通常认为视觉错觉发生在视网膜上,以通过简单统一的模型来解释该现象。然而,各种心理学和生理学研究已经显示出在较高视野出现错觉的可能性,这一点不能忽视。近来,心理学研究已经报道了识别交叉线内的角度与实际角度不同的锐角扩展。这可以通过大脑皮层的定向神经元之间的侧向抑制来解释。解释参与几何幻觉的更高视野是有趣的。在这项研究中,我们组成了神经网络模型,该模型通过在较高视野中的定向细胞之间进行侧向抑制来实现锐角扩展。此外,我们通过计算机模拟在相交的线段上测试了模型。

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