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Iterative Orientation Tuning of Simple Cells in VI: A Comparative Study of Two Computational Models for Contrast Detection in Images

机译:VI中简单细胞的迭代定向调整:两种计算模型对图像的对比度检测的比较研究

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The orientation selectivity of simple cells in visual cortex gives a striking example of the biological system perfectly adapted to the perception of oriented stimuli. Several models have employed major principles of orientation selectivity for the processing of contrast variations in images. We have recently suggested a model for iterative orientation tuning, in which the astonishingly regular layout of simple cells is explicitly involved in the processing of oriented stimuli. In this work. We extended the iterative model by incorporation a mechanism of cross-oriented inhibition. We then investigated the two models using synthetic, noisy and natural images. We found that the two models account for a large fraction of the contrast invariance of orientation selectivity another striking aspect of the behavior of simple cells. Our results indicate that the iterative processing of visual stimuli combined with local amplification of proximate simple cells is responsible for ~75% of the contrast invariance Contrary to some earlier studies, the cross-oriented inhibition did not have any significant contribution to the contrast invariance but accelerated the convergence of the iterative processing on a stable solution. When probed with different images, the new model with cross-oriented inhibition generated a clear pattern of object contours.
机译:Visual Cortex中简单细胞的取向选择性给出了生物系统的引人注目的例子,其完美地适应着定向刺激的感知。几种模型已经采用了定向选择性的主要原理,以处理图像的对比变化。我们最近提出了一种迭代定向调谐的模型,其中简单细胞的惊人定期布局明确地参与了定向刺激的处理。在这项工作中。我们通过纳入交叉面向抑制的机制来扩展迭代模型。然后我们使用合成,嘈杂和自然图像调查了这两种模型。我们发现这两个模型占定向选择性的较大的对比度不变性的另一个引人注目的方面的简单细胞的行为。我们的结果表明,视觉刺激的迭代加工与局部简单细胞的局部扩增相结合的是对比不变性的达到〜75%,与早期的研究相反,面向面向的抑制对对比不变性没有任何重大贡献,但是加速稳定解决方案迭代处理的收敛性。当用不同图像探测时,具有交叉面向抑制的新模型产生了清晰的物体轮廓模式。

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