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Higher Neural Functions and Behavior: Perceptual and categorical decision making: goal-relevant representation of two domains at different levels of abstraction

机译:更高的神经功能和行为:感知和绝对决策:不同抽象级别的两个域的目标相关表示

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摘要

To date it has been unclear whether perceptual decision making and rule-based categorization reflect activation of similar cognitive processes and brain regions. On one hand, both map potentially ambiguous stimuli to a smaller set of motor responses. On the other hand, decisions about perceptual salience typically concern concrete sensory representations derived from a noisy stimulus, while categorization is typically conceptualized as an abstract decision about membership in a potentially arbitrary set. Previous work has primarily examined these types of decisions in isolation. Here we independently varied salience in both the perceptual and categorical domains in a random dot-motion framework by manipulating dot-motion coherence and motion direction relative to a category boundary, respectively. Behavioral and modeling results suggest that categorical (more abstract) information, which is more relevant to subjects’ decisions, is weighted more strongly than perceptual (more concrete) information, although they also have significant interactive effects on choice. Within the brain, BOLD activity within frontal regions strongly differentiated categorical salience and weakly differentiated perceptual salience; however, the interaction between these two factors activated similar frontoparietal brain networks. Notably, explicitly evaluating feature interactions revealed a frontal-parietal dissociation: parietal activity varied strongly with both features, but frontal activity varied with the combined strength of the information that defined the motor response. Together, these data demonstrate that frontal regions are driven by decision-relevant features and argue that perceptual decisions and rule-based categorization reflect similar cognitive processes and activate similar brain networks to the extent that they define decision-relevant stimulus-response mappings.>NEW & NOTEWORTHY Here we study the behavioral and neural dynamics of perceptual categorization when decision information varies in multiple domains at different levels of abstraction. Behavioral and modeling results suggest that categorical (more abstract) information is weighted more strongly than perceptual (more concrete) information but that perceptual and categorical domains interact to influence decisions. Frontoparietal brain activity during categorization flexibly represents decision-relevant features and highlights significant dissociations in frontal and parietal activity during decision making.
机译:迄今为止,尚不清楚知觉决策和基于规则的分类是否反映了相似的认知过程和大脑区域的激活。一方面,两者都将潜在的模糊刺激映射到较小的一组运动反应。另一方面,关于感知显着性的决策通常涉及从嘈杂刺激中得到的具体感官表现,而分类通常被概念化为关于可能任意集合中成员的抽象决策。先前的工作主要是单独研究这些类型的决策。在这里,我们通过分别控制点运动的连贯性和相对于类别边界的运动方向,来独立地改变随机点运动框架中感知域和分类域中的显着性。行为和建模结果表明,与主题的决策相关性更高的分类(更抽象)信息比感知(更具体)信息具有更大的权重,尽管它们也对选择产生重要的交互作用。在大脑中,额叶区域内的BOLD活动强烈区分了类别显着性和弱区分了感知显着性。然而,这两个因素之间的相互作用激活了类似的额叶前脑网络。值得注意的是,明确评估特征相互作用揭示了额叶顶叶解离:顶叶活动随两种特征而变化很大,但是额叶活动随定义运动反应的信息的综合强度而变化。这些数据一起证明了额叶区域是由与决策相关的特征驱动的,并认为知觉决策和基于规则的分类反映了相似的认知过程,并在定义与决策相关的刺激-反应映射的范围内激活了相似的大脑网络。 > NEW&NOWORTHY 在这里,我们研究当决策信息在不同抽象级别的多个域中变化时,知觉分类的行为和神经动力学。行为和建模结果表明,分类(更抽象)的信息比感知(更具体)的信息具有更强的权重,但是感知和分类的领域相互影响以影响决策。分类过程中的额顶额脑活动灵活地代表了与决策相关的特征,并突出了决策过程中额叶和顶叶活动的显着分离。

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