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顶内沟在数字运算中的作用:顶叶病变病例综述。

The role of the intraparietal sulcus in numeracy: A review of parietal lesion cases.

作者信息

Duricy Erin, Durisko Corrine, Fiez Julie A

机构信息

Learning Research and Development Center, University of Pittsburgh, Pittsburgh, PA 15260, USA; Center for Neuroscience, University of Pittsburgh, Pittsburgh, PA 15260, USA; Center for the Neural Basis of Cognition, University of Pittsburgh, Pittsburgh, PA 15260, USA.

Learning Research and Development Center, University of Pittsburgh, Pittsburgh, PA 15260, USA.

出版信息

Behav Brain Res. 2025 Mar 28;482:115453. doi: 10.1016/j.bbr.2025.115453. Epub 2025 Jan 30.

Abstract

Prominent theories of numeracy link the intraparietal sulcus (IPS) to approximate representations of quantity that undergird basic math abilities. The goal of this review is to better understand the neural basis of mathematical cognition through the lens of acalculia, by identifying numeracy-focused single case studies of patients with parietal lesions and testing for causal relationships between numeracy impairments and the locus of parietal damage. A systematic literature review identified 27 single case studies with left parietal lesions and categorized administered tasks across four numeracy domains: Approximation, Calculation, Ordinality/Cardinality, and Transcoding. We compared published lesion images by drawing a sphere at the inferred center-of-mass and assigning each case to an anatomical group (IPS or Other Parietal damage) based on overlap with left IPS and original anatomical description. We performed Fisher's Exact Test to compare behavioral performance on each numeracy domain between the two groups. As an exploratory follow-up, we used Activation Likelihood Estimation (ALE) to identify sites of damage within parietal cortex preferentially associated with impairments in each domain. We found that Approximation impairments were significantly more frequent in the IPS group (p = .003). The exploratory ALE analysis revealed that only Approximation impairment cases significantly overlapped with the IPS, while impairments in other domains were localized to different regions of the parietal lobe. Based on the pattern of impairments shown across these cases, we conclude that damage to the left IPS is linked to impairments in approximation ability specifically. Our findings support theoretical claims linking IPS to magnitude representation, but do not provide evidence that IPS critically underpins performance across all numeracy tasks. Instead, our findings are more compatible with models of dissociable circuits of numerical processing within the parietal lobe.

摘要

突出的数字认知理论将顶内沟(IPS)与数量的近似表征联系起来,而这些近似表征构成了基本数学能力的基础。本综述的目的是通过失算症这一视角,通过识别针对顶叶病变患者的以数字认知为重点的单病例研究,并测试数字认知障碍与顶叶损伤部位之间的因果关系,来更好地理解数学认知的神经基础。一项系统的文献综述确定了27项关于左侧顶叶病变的单病例研究,并将所实施的任务归类到四个数字认知领域:近似估计、计算、顺序/基数以及转码。我们通过在推断的质心处绘制一个球体,并根据与左侧IPS的重叠情况以及原始解剖学描述,将每个病例分配到一个解剖学组(IPS或其他顶叶损伤),从而比较已发表的病变图像。我们进行了Fisher精确检验,以比较两组在每个数字认知领域的行为表现。作为一项探索性的后续研究,我们使用激活可能性估计(ALE)来识别顶叶皮层内优先与每个领域的损伤相关的损伤部位。我们发现,IPS组的近似估计障碍明显更为常见(p = 0.003)。探索性的ALE分析表明,只有近似估计障碍病例与IPS有显著重叠,而其他领域的障碍则定位于顶叶的不同区域。基于这些病例所显示的障碍模式,我们得出结论,左侧IPS的损伤 specifically与近似估计能力的障碍有关。我们的研究结果支持将IPS与数量表征联系起来的理论主张,但没有提供证据表明IPS是所有数字认知任务表现的关键基础。相反,我们的研究结果更符合顶叶内数字处理可分离回路的模型。

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