State Key Laboratory of Brain and Cognitive Science, CAS Center for Excellence in Brain Science and Intelligence Technology, Institute of Psychology, Chinese Academy of Sciences, 16 Lincui Road, Beijing 100101, P. R. China.
University of Chinese Academy of Sciences, 19A Yuquan Road, Beijing 100049, P. R. China.
Sci Rep. 2017 Feb 6;7:42018. doi: 10.1038/srep42018.
When viewing ambiguous stimuli, people tend to perceive some interpretations more frequently than others. Such perceptual biases impose various types of constraints on visual perception, and accordingly, have been assumed to serve distinct adaptive functions. Here we demonstrated the interaction of two functionally distinct biases in bistable biological motion perception, one regulating perception based on the statistics of the environment - the viewing-from-above (VFA) bias, and the other with the potential to reduce costly errors resulting from perceptual inference - the facing-the-viewer (FTV) bias. When compatible, the two biases reinforced each other to enhance the bias strength and induced less perceptual reversals relative to when they were in conflict. Whereas in the conflicting condition, the biases competed with each other, with the dominant percept varying with visual cues that modulate the two biases separately in opposite directions. Crucially, the way the two biases interact does not depend on the dominant bias at the individual level, and cannot be accounted for by a single bias alone. These findings provide compelling evidence that humans robustly integrate biases with different adaptive functions in visual perception. It may be evolutionarily advantageous to dynamically reweight diverse biases in the sensory context to resolve perceptual ambiguity.
当观看模棱两可的刺激时,人们往往会更频繁地感知到某些解释。这种感知偏差对视觉感知施加了各种类型的约束,因此,人们认为它具有不同的适应功能。在这里,我们展示了两种在双稳态生物运动感知中具有不同功能的偏差之间的相互作用,一种是基于环境统计的调节感知的偏差——俯视(VFA)偏差,另一种是具有减少由感知推断引起的昂贵错误的潜力的偏差——面向观察者(FTV)偏差。当两种偏差兼容时,它们会相互加强,与发生冲突时相比,它们会导致更少的感知反转。而在冲突的情况下,两种偏差相互竞争,主导知觉随视觉线索而变化,这些线索分别以相反的方向调节两种偏差。至关重要的是,两种偏差的相互作用方式不取决于个体水平上的主导偏差,也不能仅用一种偏差来解释。这些发现为人类在视觉感知中稳健地整合具有不同适应功能的偏差提供了有力证据。在感知歧义的情况下,根据感官环境动态调整不同的偏差权重可能在进化上具有优势。