论文标题

注意力集中的视觉刺激的波传播

Wave Propagation of Visual Stimuli in Focus of Attention

论文作者

Faggi, Lapo, Betti, Alessandro, Zanca, Dario, Melacci, Stefano, Gori, Marco

论文摘要

对周围视觉环境变化的快速反应需要有效的注意机制,以将计算资源重新分配给视野中最相关的位置。尽管由于数据的可用性不断提高,目前的计算模型仍在不断提高其预测能力,但他们仍在努力近似于动物动物所表现出的有效性和效率。在本文中,我们提出了一种具有生物学上的注意力集中的计算模型,该模型表现出时空位置,非常适合并行和分布式实现。注意是作为波浪传播过程出现的,该过程源自与细节和运动信息相对应的视觉刺激。由此产生的领域遵守“抑制返回”的原则,以免陷入潜在的漏洞中。对模型的准确实验表明,它在扫描预测任务中实现了最高级别的性能。从我们在本文中建立的理论结果的看来,这可以很容易地理解,我们证明,随着波浪传播的速度无穷大,提出的模型将降低到最近提出的关注焦点的最先进的引力模型。

Fast reactions to changes in the surrounding visual environment require efficient attention mechanisms to reallocate computational resources to most relevant locations in the visual field. While current computational models keep improving their predictive ability thanks to the increasing availability of data, they still struggle approximating the effectiveness and efficiency exhibited by foveated animals. In this paper, we present a biologically-plausible computational model of focus of attention that exhibits spatiotemporal locality and that is very well-suited for parallel and distributed implementations. Attention emerges as a wave propagation process originated by visual stimuli corresponding to details and motion information. The resulting field obeys the principle of "inhibition of return" so as not to get stuck in potential holes. An accurate experimentation of the model shows that it achieves top level performance in scanpath prediction tasks. This can easily be understood at the light of a theoretical result that we establish in the paper, where we prove that as the velocity of wave propagation goes to infinity, the proposed model reduces to recently proposed state of the art gravitational models of focus of attention.

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