Stanford University Medical Center.
CEA DRF/12BM, INSERM, Université Paris-Sud, Université Paris-Saclay.
J Cogn Neurosci. 2018 Sep;30(9):1315-1322. doi: 10.1162/jocn_a_01296. Epub 2018 Jun 19.
Past research has identified anatomically specific sites within the posterior inferior temporal gyrus (PITG) and the intraparietal sulcus (IPS) areas that are engaged during arithmetic processing. Although a small region of the PITG (known as the number form area) is selectively engaged in the processing of numerals, its surrounding area is activated during both digit and number word processing. In eight participants with intracranial electrodes, we compared the timing and selectivity of electrophysiological responses in the number form area-surround and IPS regions during arithmetic processing with digits and number words. Our recordings revealed stronger electrophysiological responses in the high-frequency broadband range in both regions to digits than number words, with the difference that number words elicited delayed activity in the IPS but not PITG. Our findings of distinct profiles of responses in the PITG and the IPS to digits compared with number words provide novel information that is relevant to existing theoretical models of mathematical cognition.
过去的研究已经确定了后下颞回 (PITG) 和顶内沟 (IPS) 区域内的解剖特定部位在算术处理过程中被激活。虽然 PITG 的一个小区域(称为数字形式区域)专门参与数字的处理,但它的周围区域在数字和数字单词处理过程中都被激活。在八名接受颅内电极的参与者中,我们比较了在进行数字和数字单词计算时,数字形式区域周围和 IPS 区域的电生理反应的时间和选择性。我们的记录显示,在高频宽带范围内,两个区域对数字的电生理反应都强于数字单词,区别在于数字单词在 IPS 中引起延迟活动,但在 PITG 中没有。我们发现 PITG 和 IPS 对数字的反应模式与数字单词的反应模式不同,这为现有的数学认知理论模型提供了相关的新信息。