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根据连接性定义的顶内沟分区在决策过程中对抽象信息的反应存在差异。

Connectivity-Defined Subdivisions of the Intraparietal Sulcus Respond Differentially to Abstraction during Decision-Making.

作者信息

Newton Melissa, Cookson Savannah L, D'Esposito Mark, Kayser Andrew S

机构信息

Helen Wills Neuroscience Institute, University of California, Berkeley, Berkeley, California 94720.

Department of Neurology, University of California, San Francisco, San Francisco, California 94158.

出版信息

J Neurosci. 2022 Sep 28;42(39):7454-7465. doi: 10.1523/JNEUROSCI.1237-21.2022.

Abstract

The intraparietal sulcus (IPS) has been implicated in numerous functions that range from representation of visual stimuli to action planning, but its role in abstract decision-making has been unclear, in part because low-level functions often act as confounds. Here, we address this problem using a task that dissociates abstract decision-making from sensory salience, attentional control, motor planning, and motor output. Functional MRI data were collected from healthy female and male human subjects while they performed a policy abstraction task requiring use of a more abstract (second-order) rule to select between two less abstract (first-order) rules that informed the motor response. By identifying IPS subdivisions with preferential connectivity to prefrontal regions that are differentially responsive to task abstraction, we found that a caudal IPS (cIPS) subregion with strongest connectivity to the pre-premotor cortex was preferentially active for second-order cues, whereas a rostral IPS subregion (rIPS) with strongest connectivity to the dorsal premotor cortex was active during attentional control over first-order cues. These effects for abstraction were seen in addition to cIPS activity that was specific to sensory salience, and rIPS activity that was specific to motor output. Notably, topographic responses to the second-order cue were detected along the caudal-rostral axis of IPS, mirroring the broader organization seen in lateral prefrontal cortex. Together, these data demonstrate that subregions within IPS exhibit activity responsive to policy abstraction, and they suggest that IPS may be organized into frontoparietal subnetworks that support hierarchical cognitive control. Abstract decision-making allows us to flexibly adapt our behavior to new contexts. Although much previous work has focused on the role of lateral prefrontal cortex in such decisions, the contributions of parietal cortex have been relatively understudied. Here, we demonstrate that spatially segregated subregions of human IPS with strong functional connections to lateral prefrontal cortex demonstrate activity selective for abstract decisions. This activity can be distinguished from responses resulting from cognitive processes related to sensory salience, attentional control, motor planning, and movement. Together, these findings indicate that different task demands are reflected in the topography of IPS, and they explicitly reveal a role in abstract decision-making.

摘要

顶内沟(IPS)与从视觉刺激表征到动作规划等众多功能相关,但它在抽象决策中的作用尚不清楚,部分原因是低层次功能常常构成干扰因素。在此,我们通过一项任务来解决这个问题,该任务将抽象决策与感觉显著性、注意力控制、运动规划和运动输出区分开来。在健康的男性和女性受试者执行一项策略抽象任务时,收集了功能性磁共振成像(fMRI)数据,该任务要求使用更抽象的(二阶)规则在两个不太抽象的(一阶)规则之间进行选择,而这两个一阶规则决定了运动反应。通过识别与对任务抽象有不同反应的前额叶区域具有优先连接的IPS细分区域,我们发现与运动前区皮层连接最强的尾侧IPS(cIPS)子区域对二阶线索有优先激活,而与背侧运动前区皮层连接最强的嘴侧IPS子区域(rIPS)在对一阶线索的注意力控制过程中被激活。除了cIPS对感觉显著性的特异性活动和rIPS对运动输出的特异性活动外,还观察到了这些与抽象相关的效应。值得注意的是,沿着IPS的尾侧 - 嘴侧轴检测到了对二阶线索的地形学反应,这与外侧前额叶皮层中更广泛的组织情况相似。总之,这些数据表明IPS内的子区域表现出对策略抽象有反应的活动,并且表明IPS可能被组织成支持分层认知控制的额顶叶子网。抽象决策使我们能够灵活地使自己的行为适应新环境。尽管之前的许多工作都集中在外侧前额叶皮层在此类决策中的作用,但顶叶皮层的贡献相对较少受到研究。在此,我们证明了人类IPS中与外侧前额叶皮层有强功能连接的空间分离子区域表现出对抽象决策具有选择性的活动。这种活动可以与由与感觉显著性、注意力控制、运动规划和运动相关的认知过程产生的反应区分开来。总之,这些发现表明不同的任务需求反映在IPS的地形学中,并且它们明确揭示了其在抽象决策中的作用。

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