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背外侧前额叶皮层和腹内侧前额叶皮层在人类分类中的分离作用。

Dissociable Roles of the Dorsolateral and Ventromedial Prefrontal Cortex in Human Categorization.

机构信息

The Picower Institute of Learning and Memory, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139

Department of Psychological and Brain Sciences, University of Iowa, Iowa City, Iowa 52242.

出版信息

J Neurosci. 2024 Aug 21;44(34):e2343232024. doi: 10.1523/JNEUROSCI.2343-23.2024.

Abstract

Models of human categorization predict the prefrontal cortex (PFC) serves a central role in category learning. The dorsolateral prefrontal cortex (dlPFC) and ventromedial prefrontal cortex (vmPFC) have been implicated in categorization; however, it is unclear whether both are critical for categorization and whether they support unique functions. We administered three categorization tasks to patients with PFC lesions (mean age, 69.6 years; 5 men, 5 women) to examine how the prefrontal subregions contribute to categorization. These included a rule-based (RB) task that was solved via a unidimensional rule, an information integration (II) task that was solved by combining information from two stimulus dimensions, and a deterministic/probabilistic (DP) task with stimulus features that had varying amounts of category-predictive information. Compared with healthy comparison participants, both patient groups had impaired performance. Impairments in the dlPFC patients were largest during the RB task, whereas impairments in the vmPFC patients were largest during the DP task. A hierarchical model was fit to the participants' data to assess learning deficits in the patient groups. PFC damage was correlated with a regularization term that limited updates to attention after each trial. Our results suggest that the PFC, as a whole, is important for learning to orient attention to relevant stimulus information. The dlPFC may be especially important for rule-based learning, whereas the vmPFC may be important for focusing attention on deterministic (highly diagnostic) features and ignoring less predictive features. These results support overarching functions of the dlPFC in executive functioning and the vmPFC in value-based decision-making.

摘要

人类分类模型预测前额叶皮层(PFC)在类别学习中起核心作用。背外侧前额叶皮层(dlPFC)和腹内侧前额叶皮层(vmPFC)与分类有关;然而,尚不清楚两者是否对分类都至关重要,以及它们是否支持独特的功能。我们对 PFC 损伤患者(平均年龄,69.6 岁;5 男,5 女)进行了三项分类任务,以检查前额叶亚区如何对分类做出贡献。这些任务包括基于规则的(RB)任务,该任务通过单一维度规则解决;信息整合(II)任务,通过整合来自两个刺激维度的信息来解决;以及确定性/概率性(DP)任务,其刺激特征具有不同数量的类别预测信息。与健康对照组参与者相比,两组患者的表现均受损。dlPFC 患者在 RB 任务中的表现受损最大,而 vmPFC 患者在 DP 任务中的表现受损最大。对参与者的数据进行了层次模型拟合,以评估患者组的学习缺陷。PFC 损伤与正则化项相关,该正则化项限制了每次试验后对注意力的更新。我们的结果表明,PFC 作为一个整体,对于学习将注意力定向到相关的刺激信息非常重要。dlPFC 可能对基于规则的学习尤为重要,而 vmPFC 可能对关注确定性(高度诊断性)特征和忽略预测性较低的特征很重要。这些结果支持 dlPFC 在执行功能中的总体功能和 vmPFC 在基于价值的决策中的功能。

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