How do brain regions specialised for concrete and abstract concepts align with functional brain networks? A neuroimaging meta-analysis

IF 7.5 1区 医学 Q1 BEHAVIORAL SCIENCES
Paul Hoffman, Matthew Bair
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引用次数: 0

Abstract

Identifying the brain regions that process concrete and abstract concepts is key to understanding the neural architecture of thought, memory and language. We review current theories of concreteness effects and test their neural predictions in a meta-analysis of 72 neuroimaging studies (1400 participants). Our analysis includes more than twice as many studies as previous meta-analyses, allowing for a more sensitive mapping of these effects across the brain. We also conducted a quantitative assessment of the degree to which concreteness effects aligned with a range of large-scale functional brain networks. Our results suggest that concrete and abstract concepts vary both in the information-processing modalities they engage and in the demands they place on cognitive control processes. Abstract concepts preferentially activated networks for social cognition (particularly for sentences), language and semantic control (particularly when presented as single words). Concrete concepts preferentially activated action processing regions when presented in sentences, though we found no evidence that they activated visual networks. Specialisation for both concept types was present in different parts of the default mode network (DMN), with effects dissociating along a social-spatial axis. Concrete concepts generated greater activation in a medial temporal DMN component, implicated in constructing mental models of spatial contexts and scenes. In contrast, abstract concepts showed greater activation in frontotemporal DMN regions involved in social and language processing. These results align with prior claims that generating models of situations and events is a core DMN function and indicate specialisation within DMN for different aspects of these models.
专门负责具体和抽象概念的大脑区域如何与功能性大脑网络保持一致?神经影像学荟萃分析
识别处理具体和抽象概念的大脑区域是理解思维、记忆和语言的神经结构的关键。我们回顾了当前的具体效应理论,并在对72项神经影像学研究(1400名参与者)的荟萃分析中测试了它们的神经预测。我们的分析包括的研究是之前荟萃分析的两倍多,从而可以更敏感地绘制这些影响在整个大脑中的分布图。我们还对具体效应与一系列大规模脑功能网络相一致的程度进行了定量评估。我们的研究结果表明,具体和抽象概念在信息处理方式和对认知控制过程的要求上都有所不同。抽象概念优先激活社会认知网络(特别是句子)、语言和语义控制网络(特别是当以单个单词呈现时)。具体的概念在句子中呈现时优先激活动作处理区域,尽管我们没有发现它们激活视觉网络的证据。两种概念类型的专门化存在于默认模式网络(DMN)的不同部分,其效应沿着社会空间轴分离。具体概念在内侧颞DMN部分产生了更大的激活,涉及构建空间背景和场景的心理模型。相比之下,抽象概念在涉及社会和语言处理的额颞叶DMN区域显示出更大的激活。这些结果与先前的说法一致,即生成情境和事件模型是DMN的核心功能,并表明DMN内部针对这些模型的不同方面进行了专业化。
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来源期刊
CiteScore
14.20
自引率
3.70%
发文量
466
审稿时长
6 months
期刊介绍: The official journal of the International Behavioral Neuroscience Society publishes original and significant review articles that explore the intersection between neuroscience and the study of psychological processes and behavior. The journal also welcomes articles that primarily focus on psychological processes and behavior, as long as they have relevance to one or more areas of neuroscience.
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