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Top-down modulation of visual processing and knowledge after 250 ms supports object constancy of category decisions

机译:250毫秒后视觉处理和知识的自上而下的调制支持类别决策的对象一致性

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摘要

People categorize objects more slowly when visual input is highly impoverished instead of optimal. While bottom-up models may explain a decision with optimal input, perceptual hypothesis testing (PHT) theories implicate top-down processes with impoverished input. Brain mechanisms and the time course of PHT are largely unknown. This event-related potential study used a neuroimaging paradigm that implicated prefrontal cortex in top-down modulation of occipitotemporal cortex. Subjects categorized more impoverished and less impoverished real and pseudo objects. PHT theories predict larger impoverishment effects for real than pseudo objects because top-down processes modulate knowledge only for real objects, but different PHT variants predict different timing. Consistent with parietal-prefrontal PHT variants, around 250 ms, the earliest impoverished real object interaction started on an N3 complex, which reflects interactive cortical activity for object cognition. N3 impoverishment effects localized to both prefrontal and occipitotemporal cortex for real objects only. The N3 also showed knowledge effects by 230 ms that localized to occipitotemporal cortex. Later effects reflected (a) word meaning in temporal cortex during the N400, (b) internal evaluation of prior decision and memory processes and secondary higher-order memory involving anterotemporal parts of a default mode network during posterior positivity (P600), and (c) response related activity in posterior cingulate during an anterior slow wave (SW) after 700 ms. Finally, response activity in supplementary motor area during a posterior SW after 900 ms showed impoverishment effects that correlated with RTs. Convergent evidence from studies of vision, memory, and mental imagery which reflects purely top-down inputs, indicates that the N3 reflects the critical top-down processes of PHT. A hybrid multiple-state interactive, PHT and decision theory best explains the visual constancy of object cognition.
机译:当视觉输入严重贫困而不是最佳时,人们对对象的分类速度就会变慢。尽管自下而上的模型可以用最佳输入来解释决策,但知觉假设检验(PHT)理论将自上而下的过程与输入不足联系起来。 PHT的脑机制和时程很大程度上未知。这项与事件相关的潜在研究使用了神经影像学范例,该范例将前额叶皮层牵涉到枕颞皮层的自上而下的调制中。主题归类为较贫困和较贫困的真实和伪对象。 PHT理论预测的是真实对象比伪对象具有更大的贫困影响,因为自上而下的过程仅调制真实对象的知识,但是不同的PHT变量预测的时机不同。与顶额-额叶PHT变异一致,大约250毫秒,最早出现的贫困的真实物体交互作用始于N3复合体,该复合体反映了交互的皮质活动以进行物体认知。 N3的贫困影响仅限于真实物体的前额叶和枕颞皮层。 N3还显示了230 ms的知识效应,该效应位于枕颞皮层。后来的影响反映了(a)N400期间颞皮质中的单词含义,(b)在后阳性(P600)期间对默认模式网络的前颞部分涉及的先前决策和记忆过程以及次级高阶记忆的内部评估,以及(c )在700毫秒后的前慢波(SW)期间,扣带回反应相关的活动。最后,在900毫秒后后SW期间补充运动区的反应活动显示出与RT相关的贫困效应。来自视觉,记忆和心理意象研究的融合证据完全反映了自上而下的输入,表明N3反映了PHT的关键自上而下的过程。混合多状态交互,PHT和决策理论可以最好地解释物体认知的视觉稳定性。

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