Department of Psychology, University of Graz, 8010 Graz, Austria
BioTechMed, 8010 Graz, Austria.
eNeuro. 2024 Apr 5;11(4). doi: 10.1523/ENEURO.0318-23.2024. Print 2024 Apr.
This systematic review presented a comprehensive survey of studies that applied transcranial magnetic stimulation and transcranial electrical stimulation to parietal and nonparietal areas to examine the neural basis of symbolic arithmetic processing. All findings were compiled with regard to the three assumptions of the triple-code model (TCM) of number processing. Thirty-seven eligible manuscripts were identified for review (33 with healthy participants and 4 with patients). Their results are broadly consistent with the first assumption of the TCM that intraparietal sulcus both hold a magnitude code and engage in operations requiring numerical manipulations such as subtraction. However, largely heterogeneous results conflicted with the second assumption of the TCM that the left angular gyrus subserves arithmetic fact retrieval, such as the retrieval of rote-learned multiplication results. Support is also limited for the third assumption of the TCM, namely, that the posterior superior parietal lobule engages in spatial operations on the mental number line. Furthermore, results from the stimulation of brain areas outside of those postulated by the TCM show that the bilateral supramarginal gyrus is involved in online calculation and retrieval, the left temporal cortex in retrieval, and the bilateral dorsolateral prefrontal cortex and cerebellum in online calculation of cognitively demanding arithmetic problems. The overall results indicate that multiple cortical areas subserve arithmetic skills.
本系统综述全面调查了应用经颅磁刺激和经颅电刺激于顶叶和非顶叶区域以研究符号算术处理的神经基础的研究。所有发现均根据数量处理的三重代码模型(TCM)的三个假设进行了编译。确定了 37 篇符合条件的文献进行综述(33 篇为健康参与者,4 篇为患者)。他们的结果基本符合 TCM 的第一个假设,即顶内沟既持有数量代码,又进行需要数值操作的运算,例如减法。然而,大量不一致的结果与 TCM 的第二个假设相冲突,即左角回负责算术事实检索,例如检索死记硬背的乘法结果。TCM 的第三个假设,即后上顶叶参与心理数字线上的空间运算,也得到了有限的支持。此外,来自 TCM 假设之外的脑区刺激的结果表明,双侧缘上回参与在线计算和检索,左颞叶参与检索,双侧背外侧前额叶皮层和小脑参与认知要求高的算术问题的在线计算。总体结果表明,多个皮层区域支持算术技能。