Numerical Cognition Laboratory, Department of Psychology, Westminster Hall, Western University, Room 325 East, London, ON, N6A 3K7 Canada.
Neurosci Biobehav Rev. 2015 Jan;48:35-52. doi: 10.1016/j.neubiorev.2014.11.006. Epub 2014 Nov 15.
In this review we examine white matter tracts that may support numerical and mathematical abilities and whether abnormalities in these pathways are associated with deficits in numerical and mathematical abilities. Diffusion tensor imaging (DTI) yields indices of white matter integrity and can provide information about the axonal organization of the brain. A growing body of research is using DTI to investigate how individual differences in brain microstructures relate to different numerical and mathematical abilities. Several tracts have been associated with numerical and mathematical abilities such as the superior longitudinal fasciculus, the posterior segment of the corpus callosum, inferior longitudinal fasciculus, corona radiata, and the corticospinal tract. Impairments in mathematics tend to be associated with atypical white matter structures within similar regions, especially in inferior parietal and temporal tracts. This systematic review summarizes and critically examines the current literature on white matter correlates of numerical and mathematical abilities, and provides directions for future research.
在这篇综述中,我们考察了可能支持数字和数学能力的白质束,以及这些通路的异常是否与数字和数学能力的缺陷有关。弥散张量成像(DTI)可以提供白质完整性的指标,并提供有关大脑轴突组织的信息。越来越多的研究正在使用 DTI 来研究大脑微观结构的个体差异与不同的数字和数学能力之间的关系。一些束与数字和数学能力有关,例如上纵束、胼胝体后部、下纵束、辐射冠和皮质脊髓束。数学障碍往往与类似区域内异常的白质结构有关,尤其是在顶下小叶和颞叶束。本系统综述总结和批判性地检查了关于数字和数学能力的白质相关性的当前文献,并为未来的研究提供了方向。