Department of Psychology, Mus Alparslan University, Muş, Turkey.
Department of Life Sciences, Centre for Cognitive Neuroscience, Brunel University London, Uxbridge, UK.
Sci Rep. 2022 May 17;12(1):8182. doi: 10.1038/s41598-022-11433-z.
Behavioural studies investigating the relationship between Executive Functions (EFs) demonstrated evidence that different EFs are correlated with each other, but also that they are partially independent from each other. Neuroimaging studies investigating such an interrelationship with respect to the functional neuroanatomical correlates are sparse and have revealed inconsistent findings. To address this question, we created four tasks derived from the same basic paradigm, one each for updating, inhibition, switching, and dual-tasking. We assessed brain activity through functional magnetic resonance imaging (fMRI) in twenty-nine participants while they performed the four EF tasks plus control tasks. For the analysis, we first determined the neural correlates of each EF by subtracting the respective control tasks from the EF tasks. We tested for unity in EF tasks by calculating the conjunction across these four "EF-minus-control" contrasts. This identified common areas including left lateral frontal cortices [middle and superior frontal gyrus (BA 6)], medial frontal cortices (BA 8) as well as parietal cortices [inferior and superior parietal lobules (BA 39/7)]. We also observed areas activated by two or three EF tasks only, such as frontoparietal areas [e.g., SFG (BA8) right inferior parietal lobule (BA 40), left precuneus (BA 7)], and subcortical regions [bilateral thalamus (BA 50)]. Finally, we found areas uniquely activated for updating [bilateral MFG (BA 8) and left supramarginal gyrus (BA 39)], inhibition (left IFG BA 46), and dual-tasking [left postcentral gyrus (BA 40)]. These results demonstrate that the functional neuroanatomical correlates of the four investigated EFs show unity as well as diversity.
行为研究调查了执行功能之间的关系,有证据表明不同的执行功能相互关联,但也有部分相互独立。神经影像学研究调查了与功能神经解剖学相关的这种相互关系,但结果不一致。为了解决这个问题,我们创建了四个源自相同基本范式的任务,每个任务用于更新、抑制、转换和双重任务。我们在 29 名参与者执行四个 EF 任务和对照任务时通过功能磁共振成像(fMRI)评估大脑活动。对于分析,我们首先通过从 EF 任务中减去各自的对照任务来确定每个 EF 的神经相关性。我们通过计算这四个“EF-对照”对比的并集来测试 EF 任务的统一性。这确定了包括左外侧额叶皮层[中额和上额回(BA6)]、内侧额叶皮层(BA8)以及顶叶皮层[下顶叶和上顶叶小叶(BA39/7)]在内的共同区域。我们还观察到仅由两个或三个 EF 任务激活的区域,例如额顶区域[例如,SFG(BA8)右下顶叶小叶(BA40),左楔前叶(BA7)]和皮质下区域[双侧丘脑(BA50)]。最后,我们发现更新[双侧额中回(BA8)和左缘上回(BA39)]、抑制(左额下回(BA46))和双重任务[左中央后回(BA40)]的独特激活区域。这些结果表明,四个被调查的执行功能的功能神经解剖学相关性既具有统一性又具有多样性。