Max Planck Institute for Biological Cybernetics, Tübingen, Germany.
Psychol Sci. 2012 Aug 1;23(8):940-8. doi: 10.1177/0956797612438735. Epub 2012 Jul 17.
In multistable perception, the brain alternates between several perceptual explanations of ambiguous sensory signals. It is unknown whether multistable processes can interact across the senses. In the study reported here, we presented subjects with unisensory (visual or tactile), spatially congruent visuotactile, and spatially incongruent visuotactile apparent motion quartets. Congruent stimulation induced pronounced visuotactile interactions, as indicated by increased dominance times for both vision and touch, and an increased percentage bias for the percept already dominant under unisensory stimulation. Thus, the joint evidence from vision and touch stabilizes the more likely perceptual interpretation and thereby decelerates the rivalry dynamics. Yet the temporal dynamics depended also on subjects' attentional focus and was generally slower for tactile than for visual reports. Our results support Bayesian approaches to perceptual inference, in which the probability of a perceptual interpretation is determined by combining visual, tactile, or visuotactile evidence with modality-specific priors that depend on subjects' attentional focus. Critically, the specificity of visuotactile interactions for spatially congruent stimulation indicates multisensory rather than cognitive-bias mechanisms.
在多稳定感知中,大脑在几个对模棱两可的感觉信号的感知解释之间交替。目前还不清楚多稳定过程是否可以在不同感觉之间相互作用。在本研究中,我们向被试呈现了单感觉(视觉或触觉)、空间一致的视触运动和空间不一致的视触运动四联体。一致的刺激引起了明显的视触相互作用,表现为视觉和触觉的主导时间都增加了,并且对于在单感觉刺激下已经占主导地位的感知,感知偏差百分比也增加了。因此,来自视觉和触觉的联合证据稳定了更可能的感知解释,从而减缓了竞争动力学。然而,时间动态也取决于被试的注意力焦点,并且对于触觉报告通常比视觉报告慢。我们的结果支持了感知推断的贝叶斯方法,其中感知解释的概率是通过将视觉、触觉或视触证据与取决于被试注意力焦点的特定于模态的先验相结合来确定的。关键是,空间一致刺激对视触相互作用的特异性表明是多感觉机制,而不是认知偏差机制。