Bio-X Laboratory, Department of Physics, Zhejiang University Hangzhou, China.
School of International Studies, Zhejiang University Hangzhou, China.
Front Hum Neurosci. 2013 Dec 6;7:844. doi: 10.3389/fnhum.2013.00844. eCollection 2013.
Arithmetic skill is of critical importance for academic achievement, professional success and everyday life, and childhood is the key period to acquire this skill. Neuroimaging studies have identified that left parietal regions are a key neural substrate for representing arithmetic skill. Although the relationship between functional brain activity in left parietal regions and arithmetic skill has been studied in detail, it remains unclear about the relationship between arithmetic achievement and structural properties in left inferior parietal area in schoolchildren. The current study employed a combination of voxel-based morphometry (VBM) for high-resolution T1-weighted images and fiber tracking on diffusion tensor imaging (DTI) to examine the relationship between structural properties in the inferior parietal area and arithmetic achievement in 10-year-old schoolchildren. VBM of the T1-weighted images revealed that individual differences in arithmetic scores were significantly and positively correlated with the gray matter (GM) volume in the left intraparietal sulcus (IPS). Fiber tracking analysis revealed that the forceps major, left superior longitudinal fasciculus (SLF), bilateral inferior longitudinal fasciculus (ILF) and inferior fronto-occipital fasciculus (IFOF) were the primary pathways connecting the left IPS with other brain areas. Furthermore, the regression analysis of the probabilistic pathways revealed a significant and positive correlation between the fractional anisotropy (FA) values in the left SLF, ILF and bilateral IFOF and arithmetic scores. The brain structure-behavior correlation analyses indicated that the GM volumes in the left IPS and the FA values in the tract pathways connecting left IPS were both related to children's arithmetic achievement. The present findings provide evidence that individual structural differences in the left IPS are associated with arithmetic scores in schoolchildren.
计算能力对学业成绩、职业成功和日常生活至关重要,而童年是获得这项技能的关键时期。神经影像学研究已经确定,左顶叶区域是代表计算能力的关键神经基础。尽管已经详细研究了左顶叶区域的功能脑活动与计算能力之间的关系,但在学龄儿童中,左顶下区域的计算成绩与结构特性之间的关系仍不清楚。本研究采用基于体素的形态测量学(VBM)对高分辨率 T1 加权图像和弥散张量成像(DTI)上的纤维追踪相结合的方法,研究了 10 岁儿童顶下区结构特性与计算成绩之间的关系。T1 加权图像的 VBM 显示,算术成绩的个体差异与左顶内沟(IPS)的灰质(GM)体积呈显著正相关。纤维追踪分析显示,主要内囊、左上纵束(SLF)、双侧下纵束(ILF)和下额枕束(IFOF)是连接左 IPS 与其他脑区的主要通路。此外,概率通路的回归分析显示,左 SLF、ILF 和双侧 IFOF 的各向异性分数(FA)值与算术成绩之间存在显著正相关。脑结构-行为相关性分析表明,左 IPS 的 GM 体积和连接左 IPS 的束路的 FA 值均与儿童的算术成绩相关。这些发现提供了证据表明,左 IPS 的个体结构差异与学龄儿童的算术成绩有关。