首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >EXPLORING THE NEURAL SUBSTRATES OF ATTENTIONAL CONTROL AND HUMAN INTELLIGENCE: DIFFUSION TENSOR IMAGING OF PREFRONTAL WHITE MATTER TRACTOGRAPHY IN HEALTHY COGNITION
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EXPLORING THE NEURAL SUBSTRATES OF ATTENTIONAL CONTROL AND HUMAN INTELLIGENCE: DIFFUSION TENSOR IMAGING OF PREFRONTAL WHITE MATTER TRACTOGRAPHY IN HEALTHY COGNITION

机译:探索注意力控制和人类智慧的神经基材:正面白质牵引在健康认知中的扩散张量影像

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We combined diffusion tension imaging (DTI) of prefrontal white matter integrity and neuropsychological measures to examine the functional neuroanatomy of human intelligence. Healthy participants completed the Wechsler Adult Intelligence Scale-Third Edition (WAIS-III) along with neuropsychological tests of attention and executive control, as measured by Trail Making Test (TMT) and Wisconsin Card Sorting Test (WCST). Stochastic tractography, considered the most effective DTI method, quantified white matter integrity of the medial orbital frontal cortex (mOFC) and rostral anterior cingulate cortex (rACC) circuitry. Based on prior studies, we hypothesized that posterior mOFC-rACC connections may play a key structural role linking attentional control processes and intelligence. Behavioral results provided strong support for this hypothesis, specifically linking attentional control processes, measured by Trails B and WCST perseverative errors, to intelligent quotient (IQ). Hierarchical regression results indicated left posterior mOFC-rACC fractional anisotropy (FA) and Trails B performance time, but not WCST perseverative errors, each contributed significantly to IQ, accounting for approximately 33.95-51.60% of the variance in IQ scores. These findings suggested that left posterior mOFC-rACC white matter connections may play a key role in supporting the relationship of executive functions of attentional control and general intelligence in healthy cognition. (C) 2016 Published by Elsevier Ltd on behalf of IBRO.
机译:我们组合了前额叶白质完整性和神经心理学措施的扩散张力成像(DTI),以检查人类智能功能性神经肿瘤。健康的参与者完成了威斯勒成人智能量表第三版(WAIS-III)以及神经心理学测试的关注和行政控制,通过TRAIL制作测试(TMT)和威斯康星卡分拣测试(WCST)测量。随机牵引,被认为是最有效的DTI方法,量化的内侧眶正面皮质(MOFC)和rostral前铰接皮质(RACC)电路的定量白质完整性。基于先前的研究,我们假设后部Mofc-Racc连接可以发挥关键结构作用,这些作用与关键的结构作用联系起来的注意力控制过程和智能。行为结果为该假设提供了强大的支持,特别是通过Trail B和WCST持续错误来测量的注意力控制过程,以智能商(IQ)。分层回归结果表明左后的Mofc-Racc分数各向异性(FA)和TRAILS B Performation Time,但不是WCST持续存在的错误,每个误差都贡献了IQ,占IQ分数差异约33.95-51.60%。这些研究结果表明,留下后部的MOFC-RACC白质连接可能在支持注意力控制和一般智力中的健康认知中的行政功能关系中发挥关键作用。 (c)2016年由elsevier有限公司发布代表银布。

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