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A biologically based model for recognition of 2-D occluded patterns

机译:基于生物学的二维闭塞模式识别模型

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In this work, we present a biologically inspired model for recognition of occluded patterns. The general architecture of the model is based on the two visual information processing pathways of the human visual system, i.e. the ventral and the dorsal pathways. The proposed hierarchically structured model consists of three parallel processing channels. The main channel learns invariant representations of the input patterns and is responsible for pattern recognition task. But, it is limited to process one pattern at a time. The direct channel represents the biologically based direct connection from the lower to the higher processing level in the human visual cortex. It computes rapid top-down pattern-specific cues to modulate processing in the other two channels. The spatial channel mimics the dorsal pathway of the visual cortex. It generates a combined saliency map of the input patterns and, later, segments the part of the map representing the occluded pattern. This segmentation process is based on our hypothesis that the dorsal pathway, in addition to encoding spatial properties, encodes the shape representations of the patterns as well. The lateral interaction between the main and the spatial channels at appropriate processing levels and top-down, pattern-specific modulation of the these two channels by the direct channel strengthen the locations and features representing the occluded pattern. Consequently, occluded patterns become focus of attention in the ventral channel and also the pattern selected for further processing along this channel for final recognition.
机译:在这项工作中,我们提出了一种生物学启发的模型,用于识别被遮挡的模式。该模型的一般架构基于人类视觉系统的两个视觉信息处理路径,即腹侧和背侧路径。提出的分层结构模型由三个并行处理通道组成。主通道学习输入模式的不变表示,并负责模式识别任务。但是,仅限于一次处理一个模式。直接通道代表人类视觉皮层中从较低到较高处理水平的基于生物学的直接连接。它计算特定于模式的快速自上而下的提示,以调制其他两个通道中的处理。空间通道模拟视觉皮层的背侧通路。它生成输入模式的组合显着性图,随后将代表遮挡模式的图的部分进行分段。这种分割过程基于我们的假设,即背侧路径除了对空间特性进行编码外,还对模式的形状表示进行编码。主通道和空间通道之间在适当的处理级别上的横向交互以及直接通道对这两个通道的自上而下的,特定于模式的调制,增强了代表被遮挡模式的位置和特征。因此,被遮挡的图案成为腹侧通道中的关注焦点,并且也选择了沿该通道进行进一步处理以最终识别的图案。

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