首页> 美国卫生研究院文献>The Journal of Neuroscience >Structural Variability within Frontoparietal Networks and Individual Differences in Attentional Functions: An Approach Using the Theory of Visual Attention
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Structural Variability within Frontoparietal Networks and Individual Differences in Attentional Functions: An Approach Using the Theory of Visual Attention

机译:额叶前额网络中的结构变异性和注意功能中的个体差异:一种使用视觉注意理论的方法

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摘要

Visuospatial attention allows us to select and act upon a subset of behaviorally relevant visual stimuli while ignoring distraction. Bundesen's theory of visual attention (TVA) () offers a quantitative analysis of the different facets of attention within a unitary model and provides a powerful analytic framework for understanding individual differences in attentional functions. Visuospatial attention is contingent upon large networks, distributed across both hemispheres, consisting of several cortical areas interconnected by long-association frontoparietal pathways, including three branches of the superior longitudinal fasciculus (SLF I-III) and the inferior fronto-occipital fasciculus (IFOF). Here we examine whether structural variability within human frontoparietal networks mediates differences in attention abilities as assessed by the TVA. Structural measures were based on spherical deconvolution and tractography-derived indices of tract volume and hindrance-modulated orientational anisotropy (HMOA). Individual differences in visual short-term memory (VSTM) were linked to variability in the microstructure (HMOA) of SLF II, SLF III, and IFOF within the right hemisphere. Moreover, VSTM and speed of information processing were linked to hemispheric lateralization within the IFOF. Differences in spatial bias were mediated by both variability in microstructure and volume of the right SLF II. Our data indicate that the microstructural and macrostrucutral organization of white matter pathways differentially contributes to both the anatomical lateralization of frontoparietal attentional networks and to individual differences in attentional functions. We conclude that individual differences in VSTM capacity, processing speed, and spatial bias, as assessed by TVA, link to variability in structural organization within frontoparietal pathways.
机译:视觉空间的注意力使我们能够选择行为相关的视觉刺激子集并对其采取行动,而无需分心。 Bundesen的视觉注意理论(TVA)()对统一模型中注意的不同方面进行了定量分析,并提供了强大的分析框架来理解注意功能的个体差异。视觉空间的注意力取决于分布在两个半球上的大型网络,该网络由几个皮质区域组成,这些皮质区域通过长联合额叶通路相互连接,包括上纵筋膜(SLF I-III)和下额枕筋膜(IFOF)的三个分支。在这里,我们检查了人类额顶网络中的结构变异性是否介导了TVA评估的注意力能力差异。结构测量基于球面反褶积和束线术得出的束体积指数和受阻调制的取向各向异性(HMOA)。视觉短期记忆(VSTM)的个体差异与右半球内SLF II,SLF III和IFOF的微观结构(HMOA)的可变性有关。此外,VSTM和信息处理的速度与IFOF中的半球偏侧化有关。空间偏倚的差异是由右SLF II的微观结构和体积的变化介导的。我们的数据表明,白质通路的微观结构和宏观结构组织对额叶额叶注意网络的解剖侧向化和注意功能的个体差异做出了不同的贡献。我们得出的结论是,TVA评估的VSTM容量,处理速度和空间偏差的个体差异与额顶途径内结构组织的可变性有关。

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