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首页> 外文期刊>NeuroImage: Clinical >Neuro-anatomical correlates of a number bisection bias: A neuropsychological voxel-based morphometry study
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Neuro-anatomical correlates of a number bisection bias: A neuropsychological voxel-based morphometry study

机译:神经解剖学相关的两等分偏差:基于神经心理学体素的形态学研究

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摘要

The number bisection tasks, whereby participants estimate the midpoint of a given number interval, is frequently used to explore the idea that numbers are spatially represented within the brain across a ‘mental number line’. Some neuropsychological research supports the argument that number bisection is a spatial task, recruiting parietal brain regions, whereas other data suggest that number bisection is dissociable from spatial processing and is instead dependent on working memory in the prefrontal cortices. This study explored the anatomical correlates of deficits in the number bisection task, using voxel-based morphometry in a sample of 25 neuropsychological patients with both left and right hemisphere damage. Interestingly, impairments in number bisection were strongly associated with grey matter lesions in the left hemisphere including both frontal and prefrontal cortices, extending to inferior parietal cortex. Similar prefrontal and frontal grey matter areas were found to be associated with increased leftward deviations (underestimations of the midpoint), whereas no suprathreshold clusters were observed for rightward deviations from the midpoint. Analysis of white matter integrity revealed that lesions in the tracts connecting the parietal and frontal cortices (i.e. the superior longitudinal fasciculus) were highly associated with leftward deviation impairments in number bisection. The data suggest that there is a common parieto-frontal number processing network underlying performances on number bisection, with larger numbers represented on the left side. Highlights ? Number bisection bias in relation to mental number line and working memory ? We use voxel based morphometry in a sample of chronic brain injury patients ? Number bisection bias related to grey matter changes parietal and prefrontal areas ? Numerical underestimation (small number bias) in left hemisphere patients.
机译:数字二等分任务(据此参与者估计给定数字间隔的中点)经常被用来探索数字在大脑中跨“心理数字线”在空间上表示的想法。一些神经心理学研究支持以下观点:数字二等分是空间任务,招募了顶叶脑区域,而其他数据表明,数字二等分与空间处理无关,而是取决于前额叶皮层的工作记忆。这项研究使用基于体素的形态计量学对25名左右半球均受损的神经心理学患者进行了研究,探讨了数字二分法任务中缺陷的解剖学相关性。有趣的是,数字平分损伤与左半球的灰质病变(包括额叶皮质和前额叶皮质)强烈相关,并延伸至下顶叶皮质。发现类似的额叶和额叶灰质区域与向左偏斜的增加(中点的低估)有关,而从中点向右偏斜没有观察到阈上聚类。对白质完整性的分析表明,连接顶叶和额叶皮层(即上纵筋膜)的道中的病变与数字二等分的向左偏离障碍高度相关。数据表明在数字二等分上有一个常见的顶额数字处理网络,其左侧代表较大的数字。强调 ?相对于心理数字线和工作记忆的数字二等分偏差?我们在慢性脑损伤患者样本中使用基于体素的形态计量学吗?与灰质变化有关的顶额和前额叶面积的数字分割偏差?左半球患者的数值低估(小偏差)。

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