Algebra dissociates from arithmetic in the brain semantic network.

IF 4.7 2区 心理学 Q1 BEHAVIORAL SCIENCES
Dazhi Cheng, Mengyi Li, Jiaxin Cui, Li Wang, Naiyi Wang, Liangyuan Ouyang, Xiaozhuang Wang, Xuejun Bai, Xinlin Zhou
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引用次数: 3

Abstract

Background: Mathematical expressions mainly include arithmetic (such as 8 - (1 + 3)) and algebra (such as a - (b + c)). Previous studies have shown that both algebraic processing and arithmetic involved the bilateral parietal brain regions. Although previous studies have revealed that algebra was dissociated from arithmetic, the neural bases of the dissociation between algebraic processing and arithmetic is still unclear. The present study uses functional magnetic resonance imaging (fMRI) to identify the specific brain networks for algebraic and arithmetic processing.

Methods: Using fMRI, this study scanned 30 undergraduates and directly compared the brain activation during algebra and arithmetic. Brain activations, single-trial (item-wise) interindividual correlation and mean-trial interindividual correlation related to algebra processing were compared with those related to arithmetic. The functional connectivity was analyzed by a seed-based region of interest (ROI)-to-ROI analysis.

Results: Brain activation analyses showed that algebra elicited greater activation in the angular gyrus and arithmetic elicited greater activation in the bilateral supplementary motor area, left insula, and left inferior parietal lobule. Interindividual single-trial brain-behavior correlation revealed significant brain-behavior correlations in the semantic network, including the middle temporal gyri, inferior frontal gyri, dorsomedial prefrontal cortices, and left angular gyrus, for algebra. For arithmetic, the significant brain-behavior correlations were located in the phonological network, including the precentral gyrus and supplementary motor area, and in the visuospatial network, including the bilateral superior parietal lobules. For algebra, significant positive functional connectivity was observed between the visuospatial network and semantic network, whereas for arithmetic, significant positive functional connectivity was observed only between the visuospatial network and phonological network.

Conclusion: These findings suggest that algebra relies on the semantic network and conversely, arithmetic relies on the phonological and visuospatial networks.

Abstract Image

Abstract Image

Abstract Image

在大脑语义网络中,代数与算术分离。
背景:数学表达式主要包括算术表达式(如8 -(1 + 3))和代数表达式(如a - (b + c))。先前的研究表明,代数处理和算术都涉及到双侧顶叶脑区。尽管已有研究表明代数与算术是分离的,但代数处理与算术分离的神经基础尚不清楚。本研究使用功能磁共振成像(fMRI)来识别用于代数和算术处理的特定大脑网络。方法:利用功能磁共振成像(fMRI)对30名大学生进行扫描,直接比较代数和算术过程中的脑活动。将与代数处理相关的脑激活、单试验(单项)个体间相关性和平均试验个体间相关性与算术相关的脑激活进行比较。通过基于种子的感兴趣区域(ROI -to-ROI)分析功能连通性。结果:大脑激活分析表明,代数能引起角回的更大激活,而算术能引起双侧辅助运动区、左脑岛和左顶叶下小叶的更大激活。个体间单次脑-行为相关研究发现,在代数语义网络中,包括颞中回、额下回、前额叶背内侧皮层和左角回,存在显著的脑-行为相关性。对于算术,显著的脑-行为相关性位于语音网络,包括中央前回和辅助运动区,以及视觉空间网络,包括双侧顶叶上小叶。对于代数,视觉空间网络和语义网络之间存在显著的正功能连通性,而对于算术,视觉空间网络和语音网络之间存在显著的正功能连通性。结论:代数依赖于语义网络,算术依赖于语音网络和视觉空间网络。
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来源期刊
Behavioral and Brain Functions
Behavioral and Brain Functions 医学-行为科学
CiteScore
5.90
自引率
0.00%
发文量
11
审稿时长
6-12 weeks
期刊介绍: A well-established journal in the field of behavioral and cognitive neuroscience, Behavioral and Brain Functions welcomes manuscripts which provide insight into the neurobiological mechanisms underlying behavior and brain function, or dysfunction. The journal gives priority to manuscripts that combine both neurobiology and behavior in a non-clinical manner.
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