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Fractionating the neural correlates of individual working memory components underlying arithmetic problem solving skills in children

机译:分解单个工作记忆成分与儿童算术问题解决技能相关的神经相关性

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摘要

Baddeley and Hitch's multi-component working memory (WM) model has played an enduring and influential role in our understanding of cognitive abilities. Very little is known, however, about the neural basis of this multi-component WM model and the differential role each component plays in mediating arithmetic problem solving abilities in children. Here, we investigate the neural basis of the central executive (CE), phonological (PL) and visuo-spatial (VS) components of WM during a demanding mental arithmetic task in 7-9 year old children (N = 74). The VS component was the strongest predictor of math ability in children and was associated with increased arithmetic complexity-related responses in left dorsolateral and right ventrolateral prefrontal cortices as well as bilateral intra-parietal sulcus and supramarginal gyrus in posterior parietal cortex. Critically, VS, CE and PL abilities were associated with largely distinct patterns of brain response. Overlap between VS and CE components was observed in left supramarginal gyrus and no overlap was observed between VS and PL components. Our findings point to a central role of visuo-spatial WM during arithmetic problem-solving in young grade-school children and highlight the usefulness of the multi-component Baddeley and Hitch WM model in fractionating the neural correlates of arithmetic problem solving during development.
机译:Baddeley和Hitch的多成分工作记忆(WM)模型在我们对认知能力的理解中起到了持久而有影响的作用。然而,关于这种多成分WM模型的神经基础以及每个成分在调解儿童算术问题解决能力方面所起的不同作用知之甚少。在这里,我们调查了7-9岁儿童(N = 74)在一项苛刻的心理算术任务中WM的中央执行(CE),语音(PL)和视觉空间(VS)组件的神经基础。 VS分量是儿童数学能力的最强预测指标,与左背外侧和右腹外侧前额叶皮层以及双侧顶内沟和顶壁后回中的算术复杂性相关的响应增加有关。至关重要的是,VS,CE和PL能力与大脑反应的明显不同模式有关。在左上颌上回中观察到VS和CE成分之间的重叠,并且在VS和PL成分之间未观察到重叠。我们的研究结果表明,视觉空间WM在解决年幼儿童算术问题的过程中发挥了核心作用,并强调了多成分Baddeley和Hitch WM模型在分摊开发过程中算术问题解决的神经相关性方面的作用。

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