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Can Peripheral Representations Improve Clutter Metrics on Complex Scenes?

机译:外围表示可以改善复杂场景的杂波指标吗?

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Previous studies have proposed image-based clutter measures that correlate with human search times and/or eye movements. However, most models do not take into account the fact that the effects of clutter interact with the foveated nature of the human visual system: visual clutter further from the fovea has an increasing detrimental influence on perception. Here, we introduce a new foveated clutter model to predict the detrimental effects in target search utilizing a forced fixation search task. We use Feature Congestion (Rosenholtz et al.) as our non foveated clutter model, and we stack a peripheral architecture on top of Feature Congestion for our foveated model. We introduce the Peripheral Integration Feature Congestion (PIFC) coefficient, as a fundamental ingredient of our model that modulates clutter as a non-linear gain contingent on eccentricity. We show that Foveated Feature Congestion (FFC) clutter scores (r(44) = -0.82 ± 0.04, p < 0.0001) correlate better with target detection (hit rate) than regular Feature Congestion (r(44) = -0.19 ± 0.13, p = 0.0774) in forced fixation search; and we extend foveation to other clutter models showing stronger correlations in all cases. Thus, our model allows us to enrich clutter perception research by computing fixation specific clutter maps. Code for building peripheral representations is available.
机译:以前的研究已经提出了基于图像的杂波措施与人肉搜索时间和/或眼球运动相关。然而,大多数模型没有考虑到一个事实,即杂波的相互作用与人类视觉系统的视网膜中央凹大自然的影响:视觉上的混乱进一步从中央凹的悟性越来越不利影响。这里,我们介绍一种新的视网膜中央凹杂波模型来预测目标搜索使用强制固定搜索任务的不利影响。我们使用功能拥塞(Rosenholtz等人)作为我们的非视网膜中央凹杂波模型,我们堆外围架构为我们的视网膜中央凹模型特征拥塞的顶部。我们引入外设集成功能拥塞(PIFC)系数,作为我们的模型的基本成分是调制杂波对偏心非线性增益队伍。我们表明,视网膜中央凹功能拥塞(FFC)杂波分数(R(44)= -0.82±0.04,P <0.0001)关联更好地与目标检测(命中率)比普通特征拥塞(R(44)= -0.19±0.13, p = 0.0774),在强制固定搜索;我们扩展foveation到其它杂波模型显示在所有情况下更强的相关性。因此,我们的模式使我们充实混乱感知研究,通过计算固定具体的杂波图GB50015 - 2003建筑外围表示可用。

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