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脑区重叠且可分离:流畅智力和执行功能的神经基础。

Overlapping and dissociable brain activations for fluid intelligence and executive functions.

机构信息

Berenson-Allen Center for Non-Invasive Brain Stimulation, Beth Israel Deaconess Medical Center, Department of Neurology, Unit of Cognitive Neurology, Harvard Medical School, Boston, MA, USA.

Siena Brain Investigation & Neuromodulation Lab (Si-BIN Lab), Department of Medicine, Surgery and Neuroscience, Neurology and Clinical Neurophysiology Section, University of Siena, Siena, Italy.

出版信息

Cogn Affect Behav Neurosci. 2021 Apr;21(2):327-346. doi: 10.3758/s13415-021-00870-4. Epub 2021 Apr 26.

Abstract

Cognitive enhancement interventions aimed at boosting human fluid intelligence (gf) have targeted executive functions (EFs), such as updating, inhibition, and switching, in the context of transfer-inducing cognitive training. However, even though the link between EFs and gf has been demonstrated at the psychometric level, their neurofunctional overlap has not been quantitatively investigated. Identifying whether and how EFs and gf might share neural activation patterns could provide important insights into the overall hierarchical organization of human higher-order cognition, as well as suggest specific targets for interventions aimed at maximizing cognitive transfer. We present the results of a quantitative meta-analysis of the available fMRI and PET literature on EFs and gf in humans, showing the similarity between gf and (i) the overall global EF network, as well as (ii) specific maps for updating, switching, and inhibition. Results highlight a higher degree of similarity between gf and updating (80% overlap) compared with gf and inhibition (34%), and gf and switching (17%). Moreover, three brain regions activated for both gf and each of the three EFs also were identified, located in the left middle frontal gyrus, left inferior parietal lobule, and anterior cingulate cortex. Finally, resting-state functional connectivity analysis on two independent fMRI datasets showed the preferential behavioural correlation and anatomical overlap between updating and gf. These findings confirm a close link between gf and EFs, with implications for brain stimulation and cognitive training interventions.

摘要

旨在提高人类流体智力 (gf) 的认知增强干预措施针对执行功能 (EFs),例如在诱导转移认知训练的背景下更新、抑制和切换。然而,尽管在心理计量学水平上已经证明了 EFs 和 gf 之间存在联系,但它们的神经功能重叠尚未进行定量研究。确定 EFs 和 gf 是否以及如何可能共享神经激活模式,可以为人类高阶认知的整体层次组织提供重要的见解,并为旨在最大限度地提高认知转移的干预措施提供具体目标。我们展示了针对人类 EFs 和 gf 的可用 fMRI 和 PET 文献的定量荟萃分析结果,表明 gf 与 (i) 整体全局 EF 网络以及 (ii) 更新、切换和抑制的特定映射之间的相似性。结果突出表明,gf 与更新之间的相似性(80%的重叠)高于与抑制(34%)和切换(17%)之间的相似性。此外,还确定了三个大脑区域同时激活 gf 和三个 EFs 中的每一个,这些区域位于左额中回、左顶下小叶和前扣带皮层。最后,对两个独立的 fMRI 数据集进行的静息状态功能连接分析表明,更新和 gf 之间存在优先的行为相关性和解剖学重叠。这些发现证实了 gf 和 EFs 之间的紧密联系,这对大脑刺激和认知训练干预具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39e4/9094637/197c27769221/nihms-1789594-f0001.jpg

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