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The function of the left angular gyrus in mental arithmetic: Evidence from the associative confusion effect

机译:左角回在心理算术中的作用:来自联想混淆效应的证据

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摘要

While the left angular gyrus (lAG) has been repeatedly implicated in mental arithmetic, its precise functional role has not been established. On the one hand, it has been speculated that the lAG is involved in task‐specific processes. On the other hand, the observation of relative deactivation during arithmetic has led to the contention that differential lAG activation reflects task‐unrelated difficulty effects associated with the default mode network (DMN). Using functional magnetic resonance imaging, we investigated the neural correlates of the associative confusion effect that allowed us to dissociate effects of task difficulty and task‐related arithmetic processes on lAG activation. The associative confusion effect is characterized by poorer performance while verifying addition and multiplication equations whose solutions are associated with the other operation (confusion equations: e.g., “9 × 6 = 15”) compared with solutions unrelated to both operations (non‐confusion equations: e.g., “9 × 6 = 52”). Comparing these two conditions revealed higher activation of the anterior lAG (areas PGa, PFm, and PF) and the left dorsolateral prefrontal cortex for the confusion problems. This effect displayed only slight anatomical overlap with the well‐established reverse problem‐size effect (small minus large problems) and task‐related deactivation in the parietal cortex. The finding of greater lAG activity (less deactivation) in the more difficult task condition is inconsistent with the hypothesis that lAG activation during mental arithmetic reflects task difficulty related modulations of the DMN. Instead, the present findings provide further support for the symbol‐referent mapping hypothesis, suggesting that the lAG mediates the automatic mapping of arithmetic problems onto solutions stored in memory. Hum Brain Mapp, 2013. © 2011 Wiley Periodicals, Inc.
机译:尽管左角回(lAG)已反复牵涉到心算中,但尚未确定其精确的功能角色。一方面,据推测,IAG参与了特定于任务的过程。另一方面,观察到算术过程中的相对失活已经引起争论,即不同的lAG激活反映了与默认模式网络(DMN)相关的任务无关的难度效应。使用功能磁共振成像,我们研究了联想混淆效应的神经相关性,使我们能够分离任务难度和与任务相关的算术过程对lAG激活的影响。与不涉及这两个运算的解(非混淆式)相比,关联的混淆效应的特征在于,在验证其解与其他运算相关联的加法和乘法方程(混淆式:例如“ 9×6 = 15”)时,性能较差。例如“ 9×6 = 52”)。比较这两种情况,可以发现前lAG(区域PG​​a,PFm和PF)和左侧背外侧前额叶皮层的活化更高,从而解决了混乱的问题。这种效应仅在解剖学上与公认的反向问题尺寸效应(小到大问题)以及与顶叶皮层的任务相关的失活发生了轻微的重叠。在较困难的任务条件下发现更大的lAG活性(较少的失活)与以下假设不一致:在心算过程中lAG激活反映了与任务难度相关的DMN调制。相反,本研究结果为符号参考映射假设提供了进一步的支持,这表明lAG可以将算术问题的自动映射介导到存储在内存中的解决方案上。嗡嗡声脑图,2013年。©2011 Wiley Periodicals,Inc.

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