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Dysfunctional neural network of spatial working memory contributes to developmental dyscalculia.

机译:空间工作记忆功能失调的神经网络会导致发育困难。

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The underlying neural mechanisms of developmental dyscalculia (DD) are still far from being clearly understood. Even the behavioral processes that generate or influence this heterogeneous disorder are a matter of controversy. To date, the few studies examining functional brain activation in children with DD mainly focus on number and counting related tasks, whereas studies on more general cognitive domains that are involved in arithmetical development, such as working memory are virtually absent. There are several studies showing a close relationship between DD and spatial working memory [Camos, V. (2008). Low working memory capacity impedes both efficiency and learning of number transcoding in children. Journal of Experimental Child Psychology, 99(1), 37-57; McLean, J. F., & Hitch, G. J. (1999). Working memory impairments in children with specific arithmetic learning difficulties. Journal of Experimental Child Psychology, 74(3), 240-260; Rosselli, M., Matute, E., Pinto, N., & Ardila, A. (2006). Memory abilities in children with subtypes of dyscalculia. Developmental Neuropsychology, 30(3), 801-818; Siegel, L. S., & Ryan, E. B. (1989). The development of working memory in normally achieving and subtypes of learning disabled children. Child Development, 60(4), 973-980]. The relationship between these two mechanisms is still matter of debate, but this study follows the assumption that poor spatial working memory capacity may hinder the acquisition of spatial number representations in children with DD [Geary, D. C. (1993). Mathematical disabilities: Cognitive, neuropsychological, and genetic components. Psychological Bulletin, 114(2), 345-362; von Aster, M., & Shalev, R. S. (2007). Number development and developmental dyscalculia. Developmental Medicine and Child Neurology, 49(11), 868-873]. Using functional MRI the current study compares brain activity associated with spatial working memory processes in 8-10-year-old children with DD and normally achieving controls. Both groups showed significant spatial working memory related activity in a network including occipital and parietal regions. Children with DD showed weaker neural activation compared to the control group during a spatial working memory task in the right intraparietal sulcus (IPS), the right insula and the right inferior frontal lobe. Performance tests outside the scanner showed impaired working memory proficiency in children with DD. Bringing behavioral performance and neural activity together we found significant correlations of right IPS activity with performance on the verbal digit span forward and the spatial Corsi Block Tapping test. Our findings demonstrate for the first time an involvement of spatial working memory processes in the neural underpinnings of DD. These poor spatial working memory processes may inhibit the formation of spatial number representations (mental numberline) as well as the storage and retrieval of arithmetical facts.
机译:发育障碍(DD)的潜在神经机制仍远远不清楚。甚至产生或影响这种异质性疾病的行为过程都存在争议。迄今为止,很少有研究检查DD儿童的功能性大脑激活的研究主要集中在数量和计数相关任务上,而实际上还缺少对涉及算术发展的更一般认知领域(例如工作记忆)的研究。有几项研究表明DD与空间工作记忆之间有着密切的关系[Camos,V.(2008)。工作记忆容量低会阻碍儿童的数字转码效率和学习。实验儿童心理学杂志,99(1),37-57; McLean,J. F.和Hitch,G. J.(1999)。具有特定算术学习困难的儿童的工作记忆障碍。实验儿童心理学杂志,74(3),240-260; Rosselli,M.,Matute,E.,Pinto,N。和Ardila,A。(2006)。小儿发育不良的儿童的记忆能力。发育神经心理学,30(3),801-818; Siegel,L.S。和Ryan,E.B。(1989)。在正常情况下学习障碍儿童的工作记忆和亚型的发展。儿童发育,60(4),973-980]。这两种机制之间的关系仍然存在争议,但是这项研究是基于这样的假设,即差的空间工作记忆能力可能会阻碍DD儿童的空间数字表示的获得[Geary,D. C.(1993)。数学残疾:认知,神经心理学和遗传因素。心理公报,114(2),345-362; von Aster,M.&Shalev,R.S.(2007)。数量发展和发育障碍。发育医学与儿童神经病学,49(11),868-873]。本研究使用功能性MRI比较了8-10岁DD患儿并正常取得控制的大脑活动与空间工作记忆过程相关。两组均在包括枕骨和顶叶区域的网络中显示出明显的空间工作记忆相关活动。 DD儿童在右顶顶沟(IPS),右岛和右下额叶的空间工作记忆任务中显示出比对照组弱的神经激活作用。扫描仪外部的性能测试表明DD儿童的工作记忆能力受损。将行为表现和神经活动结合在一起,我们发现正确的IPS行为与向前的手指跨度和空间Corsi Block Tapping测试的表现具有显着的相关性。我们的发现首次证明了空间工作记忆过程参与了DD的神经基础。这些不良的空间工作记忆过程可能会抑制空间数字表示(心理数字线)的形成以及算术事实的存储和检索。

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