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A Common Mechanism for Perceptual Reversals in Motion-Induced Blindness, the Troxler Effect, and Perceptual Filling-In.

机译:运动诱发失明,特洛克斯勒效应和感知填充的感知逆转的共同机制。

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摘要

Several striking visual phenomena involve a physically present stimulus that alternates between being perceived and being "invisible." For example, motion-induced blindness, the Troxler effect, and perceptual filling-in all consist of subjective alternations where an item repeatedly changes from being seen to unseen. In the present study, we explored whether these three specific visual phenomena share any commonalities in their alternation rates and patterns to better understand the mechanisms of each. Data from 69 individuals revealed moderate to strong correlations across the three phenomena for the number of perceptual disappearances and the accumulated duration of the disappearances. Importantly, these effects were not correlated with eye movement patterns (saccades) assessed through eye tracking, differences in motion sensitivity as indexed by dot coherence and speed perception thresholds, or simple reaction time abilities. Principal component analyses revealed a single component that explained 67% of the variance for the number of perceptual reversals and 60% for the accumulated duration of the disappearances. The temporal dynamics of illusory disappearances was also compared for each phenomenon, and normalized durations of disappearances were well fit by a gamma distribution with similar shape parameters for each phenomenon, suggesting that they may be driven by a single oscillatory mechanism.
机译:几种引人注目的视觉现象涉及物理上存在的刺激,这些刺激在感知和“不可见”之间交替。例如,运动引起的失明,特罗克斯勒效应和知觉填充都由主观交替组成,其中项目从可见到反复变化。在本研究中,我们探讨了这三种特定的视觉现象在其交替率和模式上是否具有任何共同点,以更好地理解每种现象的机理。来自69个个体的数据显示,这三种现象在知觉失踪的数量和失踪的累积持续时间之间具有中等至强相关性。重要的是,这些影响与通过眼动追踪评估的眼动模式(扫视),以点相干性和速度感知阈值为指标的运动敏感性差异或简单的反应时间能力无关。主成分分析揭示了一个单一成分,该成分解释了67%的感知逆转数量方差和60%的消失持续时间。还比较了每种现象的幻觉消失的时间动态,并且消失的归一化持续时间与每种现象具有相似形状参数的伽玛分布非常吻合,表明它们可能是由单个振荡机制驱动的。

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