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Distinct neural substrates of visuospatial and verbal-analytic reasoning as assessed by Raven’s Advanced Progressive Matrices

机译:根据Raven的进阶渐进矩阵评估视觉空间和言语分析推理的独特神经基础

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摘要

Recent studies revealed spontaneous neural activity to be associated with fluid intelligence (gF) which is commonly assessed by Raven’s Advanced Progressive Matrices, and embeds two types of reasoning: visuospatial and verbal-analytic reasoning. With resting-state fMRI data, using global brain connectivity (GBC) analysis which averages functional connectivity of a voxel in relation to all other voxels in the brain, distinct neural correlates of these two reasoning types were found. For visuospatial reasoning, negative correlations were observed in both the primary visual cortex (PVC) and the precuneus, and positive correlations were observed in the temporal lobe. For verbal-analytic reasoning, negative correlations were observed in the right inferior frontal gyrus (rIFG), dorsal anterior cingulate cortex and temporoparietal junction, and positive correlations were observed in the angular gyrus. Furthermore, an interaction between GBC value and type of reasoning was found in the PVC, rIFG and the temporal lobe. These findings suggest that visuospatial reasoning benefits more from elaborate perception to stimulus features, whereas verbal-analytic reasoning benefits more from feature integration and hypothesis testing. In sum, the present study offers, for different types of reasoning in gF, first empirical evidence of separate neural substrates in the resting brain.
机译:最近的研究表明,自发性神经活动与体液智力(gF)相关,后者通常由Raven的进阶渐进矩阵进行评估,并且嵌入了两种类型的推理:视觉空间推理和言语分析推理。利用静止状态的fMRI数据,使用全局大脑连接性(GBC)分析来平均一个体素相对于大脑中所有其他体素的功能连接性,发现了这两种推理类型的明显神经相关性。进行视觉空间推理时,在初级视觉皮层(PVC)和胎前神经中均观察到负相关,在颞叶中观察到正相关。对于言语分析推理,在右下额额回(rIFG),背扣带前皮质和颞顶交界处观察到负相关,而在角回处观察到正相关。此外,在PVC,rIFG和颞叶中发现了GBC值与推理类型之间的相互作用。这些发现表明,视觉空间推理更多地受益于对刺激特征的精细感知,而言语分析推理则更多地受益于特征整合和假设检验。总而言之,对于gF中的不同类型的推理,本研究为静息大脑中分离的神经基质的第一个经验证据提供了证据。

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