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Structural hemispheric asymmetries underlie verbal Stroop performance

机译:结构半球的不对称下降言语速率性能

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Highlights ? We tested whether structural brain asymmetries are involved in Stroop effect. ? Reduced Stroop effect followed leftward asymmetry in visual word form area. ? These results were observed for the verbal Stroop task but not for the spatial one. ? Posterior brain asymmetries show a domain-dependent role in cognitive control. Abstract Performance on tasks involving cognitive control such as the Stroop task is often associated with left lateralized brain activations. Based on this neuro-functional evidence, we tested whether leftward structural grey matter asymmetries would also predict inter-individual differences in combatting Stroop interference. To check for the specificity of the results, both a verbal Stroop task and a spatial one were administered to a total of 111 healthy young individuals, for whom T1-weighted magnetic resonance imaging (MRI) images were also acquired. Surface thickness and area estimations were calculated using FreeSurfer. Participants’ hemispheres were registered to a symmetric template and Laterality Indices (LI) for the surface thickness and for the area at each vertex in each participant were computed. The correlation of these surface LI measures with the verbal and spatial Stroop effects (incongruent–congruent difference in trial performance) was assessed at each vertex by means of general linear models at the whole-brain level. We found a significant correlation between performance and surface area LI in an inferior posterior temporal cluster (overlapping with the so-called visual word form area, VWFA), with a more left-lateralized area in this region associated with a smaller Stroop effect only in the verbal task. These results point to an involvement of the VWFA for higher-level processes based on word reading, including the suppression of this process when required by the task, and could be interpreted in the context of cross-hemispheric rivalry. ]]>
机译:强调 ?我们测试了结构脑不对称是否参与了Troop效果。还减少的速率效应遵循视觉字形面积的向左不对称。还对于口头速率任务而不是空间之一,观察到这些结果。还后脑不对称在认知控制中呈现依赖性作用。摘要涉及诸如Stroop任务的认知控制的任务的性能通常与左侧脑激活相关联。基于这种神经功能证据,我们测试了向左结构灰质不对称的否则还将预测各种抗战性干扰的差异。为了检查结果的特异性,既有口头速率和空间又施加到总共111个健康的年轻人,因为也获得了T1加权磁共振成像(MRI)图像。使用FreeSurfer计算表面厚度和面积估计。参与者的半球被登记到对称模板和横向指数(Li)的表面厚度,并且计算每个参与者的每个顶点的区域。通过全脑水平的一般线性模型,在每个顶点评估这些表面Li测量与口头和空间速率的措施(试验性能不一致)的相关性进行了评估。我们发现性能和表面积Li在下后颞簇中的性能和表面积之间的显着相关性(与所谓的视觉字形面积,VWFA重叠),在该区域中具有更长的左侧侧向区域,仅与较小的速率效应相关联口头任务。这些结果指出了VWFA基于Word读数的更高级别过程的参与,包括任务要求时抑制该过程,并且可以在交叉半球竞争的背景下解释。 ]]>

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