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白质微结构的个体差异反映了选择过程中功能连接的变化。

Individual differences in white-matter microstructure reflect variation in functional connectivity during choice.

作者信息

Boorman Erie Dell, O'Shea Jacinta, Sebastian Catherine, Rushworth Matthew F S, Johansen-Berg Heidi

机构信息

Centre for Functional MRI of the Brain, University of Oxford, Oxford OX3 9DU, United Kingdom.

出版信息

Curr Biol. 2007 Aug 21;17(16):1426-31. doi: 10.1016/j.cub.2007.07.040. Epub 2007 Aug 9.

Abstract

The relation between brain structure and function is of fundamental importance in neuroscience. Comparisons between behavioral and brain-imaging measures suggest that variation in brain structure correlates with the presence of specific skills. Behavioral measures, however, reflect the integrated function of multiple brain regions. Rather than behavior, a physiological index of function could be a more sensitive and informative measure with which to compare structural measures. Here, we test for a relationship between a physiological measure of functional connectivity between two brain areas during a simple decision-making task and a measure of structural connectivity. Paired-pulse transcranial magnetic stimulation indexed functional connectivity between two regions important for action choices: the premotor and motor cortex. Fractional anisotropy (FA), a marker of microstructural integrity, indexed structural connectivity. Individual differences in functional connectivity during action selection show highly specific correlations with FA in localized regions of white-matter interconnecting regions, including the premotor and motor cortex. Probabilistic tractography, a technique for identifying fiber pathways from diffusion-weighted imaging (DWI), was used to reconstruct the anatomical networks linking the component brain regions involved in making decisions. These findings demonstrate a relationship between individual differences in functional and structural connectivity within human brain networks central to action choice.

摘要

脑结构与功能之间的关系在神经科学中至关重要。行为测量与脑成像测量之间的比较表明,脑结构的变化与特定技能的存在相关。然而,行为测量反映的是多个脑区的综合功能。与行为相比,功能的生理指标可能是一种更敏感且信息丰富的测量方法,可用于比较结构测量。在此,我们测试在简单决策任务期间两个脑区之间功能连接的生理测量与结构连接测量之间的关系。配对脉冲经颅磁刺激确定了对动作选择重要的两个区域之间的功能连接:运动前区和运动皮层。分数各向异性(FA),一种微观结构完整性的标志物,确定了结构连接。动作选择过程中功能连接的个体差异与连接运动前区和运动皮层等白质互连区域局部区域的FA显示出高度特异性的相关性。概率性纤维束成像,一种从扩散加权成像(DWI)识别纤维通路的技术,被用于重建连接参与决策的组成脑区的解剖网络。这些发现证明了人类大脑网络中对于动作选择至关重要的功能和结构连接的个体差异之间的关系。

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