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Neural dynamics of feedforward and feedback processing in figure-ground segregation

机译:图形-地面隔离中前馈和反馈处理的神经动力学

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摘要

Determining whether a region belongs to the interior or exterior of a shape (figure-ground segregation) is a core competency of the primate brain, yet the underlying mechanisms are not well understood. Many models assume that figure-ground segregation occurs by assembling progressively more complex representations through feedforward connections, with feedback playing only a modulatory role. We present a dynamical model of figure-ground segregation in the primate ventral stream wherein feedback plays a crucial role in disambiguating a figure's interior and exterior. We introduce a processing strategy whereby jitter in RF center locations and variation in RF sizes is exploited to enhance and suppress neural activity inside and outside of figures, respectively. Feedforward projections emanate from units that model cells in V4 known to respond to the curvature of boundary contours (curved contour cells), and feedback projections from units predicted to exist in IT that strategically group neurons with different RF sizes and RF center locations (teardrop cells). Neurons (convex cells) that preferentially respond when centered on a figure dynamically balance feedforward (bottom-up) information and feedback from higher visual areas. The activation is enhanced when an interior portion of a figure is in the RF via feedback from units that detect closure in the boundary contours of a figure. Our model produces maximal activity along the medial axis of well-known figures with and without concavities, and inside algorithmically generated shapes. Our results suggest that the dynamic balancing of feedforward signals with the specific feedback mechanisms proposed by the model is crucial for figure-ground segregation.
机译:确定区域是属于形状的内部还是外部(图形-地面分离)是灵长类动物大脑的核心能力,但其潜在机制尚未得到很好的理解。许多模型假定通过前馈连接逐步组装更复杂的表示,而图形-背景分离发生,而反馈仅起到调节作用。我们提出了一种灵长类动物腹侧流中人物-地面隔离的动力学模型,其中反馈在消除人物的内部和外部歧义方面起着至关重要的作用。我们引入一种处理策略,利用该策略可以利用RF中心位置的抖动和RF大小的变化分别增强和抑制图形内部和外部的神经活动。前馈投影来自对V4中的已知单元格建模的单元(已知弯曲轮廓单元格)进行建模的单元,以及来自预测存在于IT中的单元的反馈投影,这些单元对具有不同RF大小和RF中心位置的神经元进行了战略性分组(泪滴单元) )。以图形为中心时优先响应的神经元(凸细胞)动态平衡前馈(自下而上)信息和来自较高视觉区域的反馈。当人物的内部处于RF中时,通过来自检测人物边界轮廓中闭合的单元的反馈,可以增强激活效果。我们的模型在有或没有凹面的内部以及算法生成的形状内沿已知图形的中轴产生最大活动。我们的结果表明,前馈信号与模型提出的特定反馈机制之间的动态平衡对于图形-背景隔离至关重要。

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