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Scene Regularity Interacts With Individual Biases to Modulate Perceptual Stability

机译:场景规律性与单个偏差相互作用以调节感知稳定性

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摘要

Sensory input is inherently ambiguous but our brains achieve remarkable perceptual stability. Prior experience and knowledge of the statistical properties of the world are thought to play a key role in the stabilization process. Individual differences in responses to ambiguous input and biases toward one or the other interpretation could modulate the decision mechanism for perception. However, the role of perceptual bias and its interaction with stimulus spatial properties such as regularity and element density remain to be understood. To this end, we developed novel bi-stable moving visual stimuli in which perception could be parametrically manipulated between two possible mutually exclusive interpretations: transparently or coherently moving. We probed perceptual stability across three composite stimulus element density levels with normal or degraded regularity using a factorial design. We found that increased density led to the amplification of individual biases and consequently to a stabilization of one interpretation over the alternative. This effect was reduced for degraded regularity, demonstrating an interaction between density and regularity. To understand how prior knowledge could be used by the brain in this task, we compared the data with simulations coming from four different hierarchical models of causal inference. These models made different assumptions about the use of prior information by including conditional priors that either facilitated or inhibited motion direction integration. An architecture that included a prior inhibiting motion direction integration consistently outperformed the others. Our results support the hypothesis that direction integration based on sensory likelihoods maybe the default processing mode with conditional priors inhibiting integration employed in order to help motion segmentation and transparency perception.
机译:感觉输入本质上是模棱两可的,但是我们的大脑却获得了非凡的知觉稳定性。以前的经验和对世界统计特性的了解被认为在稳定过程中起着关键作用。对歧义输入的反应的个体差异以及对一种或另一种解释的偏见可能会调节感知的决策机制。然而,知觉偏差的作用及其与刺激性空间特性(例如规律性和元素密度)的相互作用尚待了解。为此,我们开发了新颖的双稳态运动视觉刺激,其中可以在两种可能的互斥解释之间进行参数操纵:透明运动或连贯运动。我们使用因子设计在三个正常或降级规则的复合刺激元素密度水平上探究了感知稳定性。我们发现,增加的密度导致个体偏见的放大,因此导致一种解释相对于另一种解释的稳定。对于降低的规律性,降低了这种影响,表明了密度和规律性之间的相互作用。为了了解大脑如何在此任务中使用先验知识,我们将数据与来自四种不同因果推论分层模型的模拟数据进行了比较。这些模型通过包括促进或抑制运动方向整合的条件先验,对先验信息的使用做出了不同的假设。包含先前禁止的运动方向集成的体系结构始终优于其他体系结构。我们的结果支持以下假设:基于感觉似然的方向积分可能是默认的处理模式,其中有条件先验抑制了积分,以帮助进行运动分割和透明度感知。

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