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Asymmetrical white matter networks for attending to global versus local features.

机译:不对称的白质网络,用于关注全局特征与局部特征。

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摘要

The ability to draw objects is a complex process depending on an array of cognitive mechanisms including routines for spatial coding, attention and the processing of both local and global features. Previous studies using both neuropsychological and neuroimaging data have reported hemispheric asymmetries in attending to local versus global features linked to a variety of cortical loci. However, it has not been examined to date whether such asymmetries exist at the level of white matter pathways sub-serving global/local attention. The current study provides a comprehensive analysis of brain-behaviour relationships in the processing of local versus global features based on data from a large cohort of sub-acute stroke patients (n = 248) and behavioural measures from a complex figure copy task. The data analysis used newly developed methods for automated delineation of stroke lesions combined with track-wise lesion deficits procedures. We found (i) that reproduction of local features in figure copying was supported by a neural network confined to the left hemisphere, consisting of cortical loci within parietal, occipital and insular lobes and interconnected by the inferior-fronto-occipital fasciculus (IFOF), and (ii) that global feature processing was associated with a right hemisphere network interconnected by the third branch of the superior longitudinal fasciculus and the long segment of the perisylvian network. The data support the argument that asymmetrical white matter disconnections within long-range association pathways predict poor complex figure drawing resulting from deficits in hierarchical representation. We conclude that hemispheric asymmetries in attending to local versus global features exist on the level of both cortical loci and the supporting white matter pathways.
机译:绘制对象的能力是一个复杂的过程,取决于一系列认知机制,包括用于空间编码,注意力以及局部和全局特征处理的例程。先前使用神经心理学和神经影像学数据进行的研究均报告了半球不对称性,这些半球形不对称性涉及与多种皮质位点相关的局部或整体特征。但是,迄今为止,尚未检查这种不对称性是否在引起全球/局部关注的白质途径水平上存在。当前的研究基于大量亚急性脑卒中患者(n = 248)的数据和复杂的图形复制任务的行为测度,对处理局部特征和全局特征时的大脑行为关系进行了全面分析。数据分析使用了新开发的方法来自动划定中风病灶并结合循迹病灶缺损程序。我们发现(i)复制图形时局部特征的复制受到局限在左半球的神经网络的支持,该网络由顶叶,枕叶和岛叶内的皮质位点组成,并由下额叶枕筋膜(IFOF)相互连接, (ii)全局特征处理与右半球网络相关联,该右半球网络由上纵筋膜的第三分支和周缘网络的长链段互连。数据支持这样的论点,即长距离缔合途径中不对称的白质断开预测了复杂的图形绘制,这是由于层次表示形式的缺陷所致。我们得出的结论是,大脑局部位点和支持性白质途径的水平都存在着参与局部和全局特征的半球不对称性。

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