Almudena Ramírez-Haro, Denise Moerel, Genevieve L Quek, Manuel Varlet, Tijl Grootswagers
Fast and accurate object recognition is crucial for effective behavior in dynamic visual environments. In some cases, the visual system must overcome ambiguity in visual input during object recognition, such as when an object is partially hidden behind another. Recurrent processing between higher- and lower-order areas is thought to play a role in resolving such ambiguity, enabling the filling in of missing visual information. Here we examined this claim using a novel paradigm in which partial object images appear "occluded" by an illusory Kanizsa figure, perception of which also depends on recurrent processing by the grouping of Pacmen inducers. If both recognizing the partial object and perceiving the illusory shape depend on recurrent processing, object recognition should vary as a function of the presence of illusory shape. Across two behavioral experiments and a separate electroencephalography decoding study, we found no evidence of an interaction between illusion perception and object recognition, as well as different neural time courses for the illusory figures alone compared with partial objects, which were decoded earlier. Ultimately, our study highlights the robustness of the visual system to solve the identity of the ambiguous object, independently of the processing of different ambiguities occurring at the same time, providing new insights into the mechanisms of recurrence in the early and late stages of information processing and its application to ambiguous object recognition.