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个体间、半球间和性别间在数量加工过程中的大脑激活的可变性。

Inter-individual, hemispheric and sex variability of brain activations during numerosity processing.

机构信息

Beijing Key Laboratory of Applied Experimental Psychology, National Demonstration Center for Experimental Psychology Education (Beijing Normal University), Faculty of Psychology, Beijing Normal University, Beijing, 100875, China.

Department of Psychology, Shanghai University of Sport, 650 Qing Yuan Huan Road, Shanghai, 200438, People's Republic of China.

出版信息

Brain Struct Funct. 2024 Mar;229(2):459-475. doi: 10.1007/s00429-023-02747-3. Epub 2024 Jan 10.

Abstract

Numerosity perception is a fundamental and innate cognitive function shared by both humans and many animal species. Previous research has primarily focused on exploring the spatial and functional consistency of neural activations that were associated with the processing of numerosity information. However, the inter-individual variability of brain activations of numerosity perception remains unclear. In the present study, with a large-sample functional magnetic resonance imaging (fMRI) dataset (n = 460), we aimed to localize the functional regions related to numerosity perceptions and explore the inter-individual, hemispheric, and sex differences within these brain regions. Fifteen subject-specific activated regions, including the anterior intraparietal sulcus (aIPS), posterior intraparietal sulcus (pIPS), insula, inferior frontal gyrus (IFG), inferior temporal gyrus (ITG), premotor area (PM), middle occipital gyrus (MOG) and anterior cingulate cortex (ACC), were delineated in each individual and then used to create a functional probabilistic atlas to quantify individual variability in brain activations of numerosity processing. Though the activation percentages of most regions were higher than 60%, the intersections of most regions across individuals were considerably lower, falling below 50%, indicating substantial variations in brain activations related to numerosity processing among individuals. Furthermore, significant hemispheric and sex differences in activation location, extent, and magnitude were also found in these regions. Most activated regions in the right hemisphere had larger activation volumes and activation magnitudes, and were located more lateral and anterior than their counterparts in the left hemisphere. In addition, in most of these regions, males displayed stronger activations than females. Our findings demonstrate large inter-individual, hemispheric, and sex differences in brain activations related to numerosity processing, and our probabilistic atlas can serve as a robust functional and spatial reference for mapping the numerosity-related neural networks.

摘要

数量感知是人类和许多动物物种共有的基本和先天认知功能。先前的研究主要集中于探索与数量信息处理相关的神经激活的空间和功能一致性。然而,数量感知的大脑激活的个体间可变性尚不清楚。在本研究中,我们使用了一个大型样本功能磁共振成像 (fMRI) 数据集 (n=460),旨在定位与数量感知相关的功能区域,并探索这些大脑区域内的个体间、半球间和性别差异。在每个个体中描绘了 15 个特定于主题的激活区域,包括前内顶叶沟 (aIPS)、后内顶叶沟 (pIPS)、岛叶、下额前回 (IFG)、下颞回 (ITG)、运动前区 (PM)、中枕叶回 (MOG) 和前扣带皮层 (ACC),然后使用它们创建一个功能概率图谱来量化数量处理的大脑激活的个体变异性。虽然大多数区域的激活百分比高于 60%,但大多数个体之间的区域交点明显较低,低于 50%,表明个体之间与数量处理相关的大脑激活存在很大差异。此外,在这些区域中还发现了激活位置、程度和幅度的显著半球和性别差异。右侧大脑中大多数激活区域的激活体积和激活幅度较大,并且比左侧大脑中的对应区域更侧向和更前。此外,在大多数这些区域中,男性的激活强度强于女性。我们的研究结果表明,与数量处理相关的大脑激活存在很大的个体间、半球间和性别差异,我们的概率图谱可以作为映射数量相关神经网络的强大功能和空间参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3127/10917853/e15ddccf9e6c/429_2023_2747_Fig1_HTML.jpg

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