Carnegie Mellon University.
The University of Sydney.
J Cogn Neurosci. 2018 Jul;30(7):1047-1058. doi: 10.1162/jocn_a_01262. Epub 2018 Mar 21.
An evolving view in cognitive neuroscience is that the dorsal visual pathway not only plays a key role in visuomotor behavior but that it also contributes functionally to the recognition of objects. To characterize the nature of the object representations derived by the dorsal pathway, we assessed perceptual performance in the context of the continuous flash suppression paradigm, which suppresses object processing in the ventral pathway while sparing computation in the dorsal pathway. In a series of experiments, prime stimuli, which were rendered imperceptible by the continuous flash suppression, still contributed to perceptual decisions related to the subsequent perceptible target stimuli. However, the contribution of the prime to perception was contingent on the prime's structural coherence, in that a perceptual advantage was observed only for targets primed by objects with legitimate 3-D structure. Finally, we obtained additional evidence to demonstrate that the processing of the suppressed objects was contingent on the magnocellular, rather than the parvocellular, system, further linking the processing of the suppressed stimuli to the dorsal pathway. Together, these results provide novel evidence that the dorsal pathway does not only support visuomotor control but, rather, that it also derives the structural description of 3-D objects and contributes to shape perception.
认知神经科学中不断发展的观点认为,背侧视觉通路不仅在运动视觉行为中起着关键作用,而且在物体识别方面也具有功能作用。为了描述背侧通路得出的物体表示的性质,我们在连续闪光抑制范式的背景下评估了感知性能,该范式抑制腹侧通路的物体处理,同时保留背侧通路的计算。在一系列实验中,通过连续闪光抑制变得不可察觉的启动刺激仍然有助于与随后可察觉的目标刺激相关的感知决策。然而,启动刺激对感知的贡献取决于启动刺激的结构连贯性,即只有当目标被具有合法 3-D 结构的物体启动时,才会观察到感知优势。最后,我们获得了额外的证据来证明被抑制物体的处理取决于大细胞系统,而不是小细胞系统,这进一步将被抑制刺激的处理与背侧通路联系起来。综上所述,这些结果提供了新的证据,表明背侧通路不仅支持运动视觉控制,而且还推导出 3-D 物体的结构描述,并有助于形状感知。