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Human lightness perception is guided by simple assumptions about reflectance and lighting

机译:人类对亮度的感知是基于有关反射率和照明的简单假设进行的

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Lightness constancy is the remarkable ability of human observers to perceive surface reflectance accurately despite variations in illumination and context. Two successful approaches to understanding lightness perception that have developed along independent paths are anchoring theory and Bayesian theories. Anchoring theory is a set of rules that predict lightness percepts under a wide range of conditions. Some of these rules are counterintuitive and difficult to motivate, e.g., a rule that large surfaces tend to look lighter than small surfaces. Bayesian theories are formulated as probabilistic assumptions about lights and objects, and they model percepts as rational inferences from sensory data. Here I reconcile these two seemingly divergent approaches by showing that many rules of anchoring theory follow from simple probabilistic assumptions about lighting and reflectance. I describe a simple Bayesian model that makes maximum a posteriori interpretations of luminance images, and I show that this model predicts many of the phenomena described by anchoring theory, including anchoring to white, scale normalization, and rules governing glow. Thus anchoring theory can be formulated naturally in a Bayesian framework, and this approach shows that many seemingly idiosyncratic properties of human lightness perception are actually rational consequences of simple assumptions about lighting and reflectance.
机译:亮度恒定是人类观察者在光照和环境变化的情况下仍能准确感知表面反射率的卓越能力。沿着独立的路径发展起来的两种成功的理解亮度感知的方法是锚定理论和贝叶斯理论。锚定理论是一组在广泛条件下预测亮度感知的规则。这些规则中的一些是违反直觉的且难以激发,例如,大表面倾向于看起来比小表面更轻的规则。贝叶斯理论被公式化为关于光和物体的概率假设,并且将感知建模为来自感官数据的理性推断。在这里,我通过证明锚定理论的许多规则遵循有关照明和反射率的简单概率假设,来调和这两种看似不同的方法。我描述了一个简单的贝叶斯模型,该模型最大程度地对亮度图像进行了后验解释,并且我展示了该模型可预测锚定理论描述的许多现象,包括锚定到白色,缩放归一化和控制辉光的规则。因此,可以在贝叶斯框架中自然地构建锚定理论,并且这种方法表明,人类亮度感知的许多看似特质性质实际上是对照明和反射率的简单假设的合理结果。

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