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Measuring structural-functional correspondence: spatial variability of specialised brain regions after macro-anatomical alignment.

机译:测量结构功能的对应关系:宏观解剖对齐后专门大脑区域的空间变异性。

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The central question of the relationship between structure and function in the human brain is still not well understood. In order to investigate this fundamental relationship we create functional probabilistic maps from a large set of mapping experiments and compare the location of functionally localised regions across subjects using different whole-brain alignment schemes. To avoid the major problems associated with meta-analysis approaches, all subjects are scanned using the same paradigms, the same scanner and the same analysis pipeline. We show that an advanced, curvature driven cortex based alignment (CBA) scheme largely removes macro-anatomical variability across subjects. Remaining variability in the observed spatial location of functional regions, thus, reflects the "true" functional variability, i.e. the quantified variability is a good estimator of the underlying structural-functional correspondence. After localising 13 widely studied functional areas, we found a large variability in the degree to which functional areas respect macro-anatomical boundaries across the cortex. Some areas, such as the frontal eye fields (FEF) are strongly bound to a macro-anatomical location. Fusiform face area (FFA) on the other hand, varies in its location along the length of the fusiform gyrus even though the gyri themselves are well aligned across subjects. Language areas were found to vary greatly across subjects whilst a high degree of overlap was observed in sensory and motor areas. The observed differences in functional variability for different specialised areas suggest that a more complete estimation of the structure-function relationship across the whole cortex requires further empirical studies with an expanded test battery.
机译:关于人脑中结构与功能之间关系的中心问题仍未得到很好的理解。为了研究这种基本关系,我们从大量的映射实验中创建了功能概率图,并使用不同的全脑对齐方案比较了对象之间的功能局部区域的位置。为避免与元分析方法相关的主要问题,所有受试者均使用相同的范例,相同的扫描仪和相同的分析管道进行扫描。我们显示,先进的,基于曲率驱动的基于皮质的对齐方式(CBA)方案在很大程度上消除了受试者之间的宏观解剖变异性。因此,在观察到的功能区域的空间位置中的剩余可变性反映了“真实的”功能可变性,即量化的可变性是基础结构-功能对应关系的良好估计。定位了13个经过广泛研究的功能区域后,我们发现功能区域尊重整个皮质宏观解剖边界的程度存在很大差异。某些区域(例如额叶视场(FEF))牢固地绑定到宏观解剖位置。另一方面,梭状面部区域(FFA)沿梭状回的长度方向变化,即使回旋本身在各个对象之间的排列也很好。人们发现,各科目的语言区域差异很大,而在感觉和运动区域则发现高度重叠。观察到的不同专业领域的功能变异性差异表明,要对整个皮质的结构-功能关系进行更完整的估计,需要使用扩展的测试电池进行进一步的实证研究。

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