Department of Neurology, University of Leipzig, Germany.
Department of Neurology, University of Leipzig, Germany.
Neuroimage. 2019 Apr 1;189:896-903. doi: 10.1016/j.neuroimage.2019.01.070. Epub 2019 Feb 1.
The term executive functions (EF) describes a set of higher cognitive abilities/skills needed for goal-oriented and flexible behavior. In contrast to a multitude of functional neuroimaging studies of EF performance, only limited and partially inconclusive data is available for the structural-neuroanatomical underpinnings of EFs, particularly in healthy adults.
Here, we applied voxel-based morphometry (VBM) and additional analyses of cortical thickness (CTH; via surface-based morphometry) to a large sample of healthy young adults from the Human Connectome Project (N = 1110; Age 28.8 ± 3.7 years) with structural MRI data and test data reflective of three core EFs [i.e. cognitive flexibility (CF), inhibitory control (IC) and working memory (WM)].
For CF and IC, VBM analyses yielded a distinct and largely overlapping pattern of exclusively negative associations (CF>IC), most prominently within the medial prefrontal cortex, the insular cortex, central/precentral regions, subcortical and mesotemporal structures. A similar, yet less pronounced pattern of negative associations was found in analyses of CTH. In contrast, both VBM and CTH analyses yielded no significant associations with WM performance.
Brain regions we found negatively associated with measures of CF and IC have been repeatedly highlighted by functional imaging studies of EF performance. The here observed inverse relationship with brain structural parameters may be related to the young age of our study population and well established neurobiological mechanisms of cortical maturation (i.e. cortical thinning via synaptic pruning and cortical myelination).
执行功能(EF)一词描述了一组用于目标导向和灵活行为的高级认知能力/技能。与大量 EF 表现的功能神经影像学研究相比,EF 的结构神经解剖学基础的数据有限且部分结论不明确,特别是在健康成年人中。
在这里,我们应用基于体素的形态测量学(VBM)和皮质厚度(CTH;通过基于表面的形态测量学)对来自人类连接组计划的大量健康年轻成年人的结构 MRI 数据和反映三个核心 EF [即认知灵活性(CF)、抑制控制(IC)和工作记忆(WM)]的测试数据进行了分析。
对于 CF 和 IC,VBM 分析产生了一种独特且基本重叠的完全负相关模式(CF>IC),最突出的是在内侧前额叶皮层、岛叶皮层、中央/额前区域、皮质下和中颞叶结构中。在 CTH 分析中发现了类似但不那么明显的负相关模式。相比之下,VBM 和 CTH 分析均未发现与 WM 表现有显著关联。
我们发现与 CF 和 IC 测量值呈负相关的大脑区域在 EF 表现的功能影像学研究中反复被强调。与大脑结构参数的这种反比关系可能与我们研究人群的年轻年龄以及成熟的神经生物学机制(即通过突触修剪和皮质髓鞘化导致的皮质变薄)有关。