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Lateral Prefrontal Cortex Subregions Make Dissociable Contributions during Fluid Reasoning

机译:外侧前额叶皮层子区域在流体推理过程中做出可分解的贡献

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摘要

Reasoning is a key component of adaptable “executive” behavior and is known to depend on a network of frontal and parietal brain regions. However, the mechanisms by which this network supports reasoning and adaptable behavior remain poorly defined. Here, we examine the relationship between reasoning, executive control, and frontoparietal function in a series of nonverbal reasoning experiments. Our results demonstrate that, in accordance with previous studies, a network of frontal and parietal brain regions is recruited during reasoning. Our results also reveal that this network can be fractionated according to how different subregions respond when distinct reasoning demands are manipulated. While increased rule complexity modulates activity within a right lateralized network including the middle frontal gyrus and the superior parietal cortex, analogical reasoning demand—or the requirement to remap rules on to novel features—recruits the left inferior rostrolateral prefrontal cortex and the lateral occipital complex. In contrast, the posterior extent of the inferior frontal gyrus, associated with simpler executive demands, is not differentially sensitive to rule complexity or analogical demand. These findings accord well with the hypothesis that different reasoning demands are supported by different frontal and parietal subregions.
机译:推理是适应性“执行”行为的关键组成部分,已知依赖于额叶和顶叶大脑区域的网络。但是,该网络支持推理和适应性行为的机制仍然定义不清。在这里,我们在一系列非语言推理实验中研究了推理,执行控制和额顶功能之间的关系。我们的结果表明,根据以前的研究,在推理过程中募集了额叶和顶叶大脑区域的网络。我们的结果还表明,可以根据操纵不同推理需求时不同子区域的响应方式对网络进行细分。虽然规则复杂度的增加会调节包括中额叶回和顶上皮层在内的右侧外侧化网络内的活动,但类比推理需求(或将规则重新映射到新颖特征的需求)会招募左下肩外侧前额叶皮层和外侧枕骨复合体。相反,下额回的后部范围与较简单的执行需求相关,对规则复杂性或类比需求不敏感。这些发现与以下假设很吻合,即不同的推理需求由不同的额叶和顶叶分区支持。

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