Northwestern University, Evanston, IL 60208, USA.
J Cogn Neurosci. 2011 Nov;23(11):3483-97. doi: 10.1162/jocn_a_00063. Epub 2011 May 13.
Over the course of the past decade, contradictory claims have been made regarding the neural bases of deductive reasoning. Researchers have been puzzled by apparent inconsistencies in the literature. Some have even questioned the effectiveness of the methodology used to study the neural bases of deductive reasoning. However, the idea that neuroimaging findings are inconsistent is not based on any quantitative evidence. Here, we report the results of a quantitative meta-analysis of 28 neuroimaging studies of deductive reasoning published between 1997 and 2010, combining 382 participants. Consistent areas of activations across studies were identified using the multilevel kernel density analysis method. We found that results from neuroimaging studies are more consistent than what has been previously assumed. Overall, studies consistently report activations in specific regions of a left fronto-parietal system, as well as in the left BG. This brain system can be decomposed into three subsystems that are specific to particular types of deductive arguments: relational, categorical, and propositional. These dissociations explain inconstancies in the literature. However, they are incompatible with the notion that deductive reasoning is supported by a single cognitive system relying either on visuospatial or rule-based mechanisms. Our findings provide critical insight into the cognitive organization of deductive reasoning and need to be accounted for by cognitive theories.
在过去的十年中,关于演绎推理的神经基础的说法存在矛盾。研究人员对文献中的明显不一致感到困惑。甚至有人质疑用于研究演绎推理神经基础的方法的有效性。然而,神经影像学发现不一致的想法并没有任何定量证据支持。在这里,我们报告了对 1997 年至 2010 年间发表的 28 项演绎推理神经影像学研究的定量荟萃分析的结果,共有 382 名参与者。使用多层次核密度分析方法确定了研究中一致的激活区域。我们发现,神经影像学研究的结果比之前假设的更一致。总体而言,研究一致报告了左额顶叶系统特定区域以及左 BG 的激活。这个大脑系统可以分解为三个子系统,它们分别对应于特定类型的演绎论证:关系、范畴和命题。这些分离解释了文献中的不一致性。然而,它们与演绎推理由依赖于视觉空间或基于规则的机制的单一认知系统支持的观点不一致。我们的发现为演绎推理的认知组织提供了重要的见解,需要由认知理论来解释。