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Discrimination of Visual Categories Based on Behavioral Relevance in Widespread Regions of Frontoparietal Cortex

机译:基于行为相关性的额叶额叶皮层广泛分布区域的视觉类别区分

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摘要

Allocating attentional resources to currently relevant information in a dynamically changing environment is critical to goal-directed behavior. Previous studies in nonhuman primates (NHPs) have demonstrated modulation of neural representations of stimuli, in particular visual categorizations, by behavioral significance in the lateral prefrontal cortex. In the human brain, a network of frontal and parietal regions, the “multiple demand” (MD) system, is involved in cognitive and attentional control. To test for the effect of behavioral significance on categorical discrimination in the MD system in humans, we adapted a previously used task in the NHP and used multivoxel pattern analysis for fMRI data. In a cued-detection categorization task, participants detected whether an image from one of two target visual categories was present in a display. Our results revealed that categorical discrimination is modulated by behavioral relevance, as measured by the distributed pattern of response across the MD network. Distinctions between categories with different behavioral status (e.g., a target and a nontarget) were significantly discriminated. Category distinctions that were not behaviorally relevant (e.g., between two targets) were not discriminated. Other aspects of the task that were orthogonal to the behavioral decision did not modulate categorical discrimination. In a high visual region, the lateral occipital complex, modulation by behavioral relevance was evident in its posterior subregion but not in the anterior subregion. The results are consistent with the view of the MD system as involved in top-down attentional and cognitive control by selective coding of task-relevant discriminations.>SIGNIFICANCE STATEMENT Control of cognitive demands fundamentally involves flexible allocation of attentional resources depending on a current behavioral context. Essential to such a mechanism is the ability to select currently relevant information and at the same time filter out information that is irrelevant. In an fMRI study, we measured distributed patterns of activity for objects from different visual categories while manipulating the behavioral relevance of the categorical distinctions. In a network of frontal and parietal cortical regions, the multiple-demand (MD) network, patterns reflected category distinctions that were relevant to behavior. Patterns could not be used to make task-irrelevant category distinctions. These findings demonstrate the ability of the MD network to implement complex goal-directed behavior by focused attention.
机译:在动态变化的环境中将注意力资源分配给当前相关的信息对于目标导向的行为至关重要。先前在非人类灵长类动物(NHPs)中的研究表明,通过在外侧额叶前额叶皮层中的行为重要性,可以调节刺激的神经表示,特别是视觉分类。在人脑中,额叶和顶叶区域网络(“多需求”(MD)系统)参与认知和注意力控制。为了测试行为意义对人类MD系统中类别歧视的影响,我们在NHP中改编了先前使用的任务,并对fMRI数据使用了多体素模式分析。在提示检测分类任务中,参与者检测到显示器中是否存在来自两个目标视觉类别之一的图像。我们的研究结果表明,分类歧视是由行为相关性调节的,该行为相关性是通过跨MD网络的响应分布模式来衡量的。明显区分了具有不同行为状态的类别(例如目标和非目标)之间的区别。不区分与行为无关的类别区分(例如,两个目标之间)。与行为决策正交的任务的其他方面并未调节分类歧视。在高视觉区域,外侧枕骨复合体受行为相关性的调节在其后部子区域很明显,而在前部子区域则没有。结果与通过选择性编码与任务相关的歧视而参与自上而下的注意和认知控制的MD系统的观点相符。>意义声明认知需求的控制从根本上涉及灵活分配注意资源取决于当前的行为背景。这种机制的本质是选择当前相关信息并同时滤除不相关信息的能力。在一项功能磁共振成像研究中,我们在处理分类差异的行为相关性时,测量了来自不同视觉类别的对象的活动分布模式。在额叶和顶叶皮质区域网络中,多需求(MD)网络的模式反映了与行为相关的类别区别。模式不能用于进行与任务无关的类别区分。这些发现证明了MD网络通过集中注意力来实现复杂的目标导向行为的能力。

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