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成人数学能力的个体差异与大脑表面解剖结构之间的关联

Associations Between Individual Differences in Mathematical Competencies and Surface Anatomy of the Adult Brain.

作者信息

Heidekum Alexander E, Vogel Stephan E, Grabner Roland H

机构信息

Educational Neuroscience, Institute of Psychology, University of Graz, Graz, Austria.

出版信息

Front Hum Neurosci. 2020 Mar 27;14:116. doi: 10.3389/fnhum.2020.00116. eCollection 2020.

Abstract

Previously conducted structural magnetic resonance imaging (MRI) studies on the neuroanatomical correlates of mathematical abilities and competencies have several methodological limitations. Besides small sample sizes, the majority of these studies have employed voxel-based morphometry (VBM)-a method that, although it is easy to implement, has some major drawbacks. Taking this into account, the current study is the first to investigate in a large sample of typically developed adults the associations between mathematical abilities and variations in brain surface structure by using surface-based morphometry (SBM). SBM is a method that also allows the investigation of brain morphometry by avoiding the pitfalls of VBM. Eighty-nine young adults were tested with a large battery of psychometric tests to measure mathematical competencies in four different areas: (1) simple arithmetic; (2) complex arithmetic; (3) higher-order mathematics; and (4) numerical intelligence. Also, we asked participants for their mathematics grades for their final school exams. Inside the MRI scanner, we collected high-resolution T1-weighted anatomical images from each subject. SBM analyses were performed with the computational anatomy toolbox (CAT12) and indices for cortical thickness, for cortical surface complexity, for gyrification, and sulcal depth were calculated. Further analyses revealed associations between: (1) the cortical surface complexity of the right superior temporal gyrus and numerical intelligence; (2) the depth of the right central sulcus and adults' ability to solve complex arithmetic problems; and (3) the depth of the left parieto-occipital sulcus and adults' higher-order mathematics competence. Interestingly, no relationships with previously reported brain regions were observed, thus, suggesting the importance of similar research to confirm the role of the brain regions found in this study.

摘要

先前进行的关于数学能力和技能的神经解剖学相关性的结构磁共振成像(MRI)研究存在若干方法学上的局限性。除了样本量小之外,这些研究中的大多数都采用了基于体素的形态计量学(VBM)——一种虽然易于实施,但存在一些主要缺点的方法。考虑到这一点,本研究首次在大量发育正常的成年人样本中,通过使用基于表面的形态计量学(SBM)来研究数学能力与脑表面结构变化之间的关联。SBM是一种通过避免VBM的缺陷来研究脑形态计量学的方法。八十九名年轻成年人接受了一系列大量的心理测量测试,以测量四个不同领域的数学技能:(1)简单算术;(2)复杂算术;(3)高等数学;以及(4)数字智力。此外,我们还询问了参与者他们期末考试的数学成绩。在MRI扫描仪内,我们从每个受试者收集了高分辨率的T1加权解剖图像。使用计算解剖工具箱(CAT12)进行SBM分析,并计算皮质厚度、皮质表面复杂性、脑回化和脑沟深度的指标。进一步的分析揭示了以下关联:(1)右侧颞上回的皮质表面复杂性与数字智力之间的关联;(2)右侧中央沟的深度与成年人解决复杂算术问题的能力之间的关联;以及(3)左侧顶枕沟的深度与成年人的高等数学能力之间的关联。有趣的是,未观察到与先前报道的脑区的关系,因此,这表明进行类似研究以证实本研究中发现的脑区的作用的重要性。

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