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Functionally informed cortex based alignment: An integrated approach for whole-cortex macro-anatomical and ROI-based functional alignment

机译:功能齐全的基于皮质的对齐方式:一种用于整体皮质宏观解剖和基于ROI的功能对齐的集成方法

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Due to anatomical variability across subjects many brain mapping experiments have analysis focused on a few particular regions of interest so as to circumvent the problem of sub-optimal statistics resulting from the lack of anatomical correspondence across subjects. Since the topographic distribution of experimental effects across the cortex is also often of interest, two separate analyses are often conducted, one on the regions of interest alone, as well as a separate 'whole brain' analysis with sub-optimal spatial correspondence across brains. In this paper we present a new group alignment procedure which incorporates, from each subject, both macro-anatomical (curvature) information and functional information from standard localizer experiments. After specifying appropriate parameters to weight anatomical and functional alignment forces, we were able to create a group cortical reconstruction which was well aligned in terms of both anatomical and functional areas. We observed an increase in the overlap of functional areas as well as an improvement in group statistics following this integrated alignment procedure. We propose that, using this alignment scheme, two separate analyses may not be necessary as both analyses can be integrated into a single procedure. After an integrated structural and functional alignment one is able to carry out a whole brain analysis with improved statistical sensitivity due to the reduction in spatial variation in the location of functional regions of interest which fCBA accomplishes. Furthermore, regions in the vicinity of localised and aligned regions-of-interest will also benefit from the integrated alignment.
机译:由于受试者之间解剖学上的变异性,许多大脑作图实验的分析集中在几个特定的​​感兴趣区域上,以规避由于受试者之间缺乏解剖学对应而导致的次优统计问题。由于通常还需要关注整个大脑皮层的实验效应的地形分布,因此经常进行两个单独的分析,一个是仅对感兴趣区域进行分析,另一个是单独的“全脑”分析,其中整个大脑的空间分布都不理想。在本文中,我们介绍了一种新的组对齐程序,该程序将每个主题的宏观解剖(曲率)信息和来自标准定位器实验的功能信息都纳入其中。在指定适当的参数以权衡解剖和功能对齐力后,我们能够创建一个在解剖和功能区域均对齐的皮质重建体。我们观察到功能区域的重叠增加,并且在执行此集成对齐过程后,组统计数据也得到了改善。我们建议使用这种比对方案,因为两个分析都可以集成到单个过程中,所以可能不需要两个单独的分析。经过整合的结构和功能比对后,由于fCBA完成的目标功能区域位置的空间变化减少,因​​此能够以提高的统计敏感性进行全脑分析。此外,局部和对准的感兴趣区域附近的区域也将从集成对准中受益。

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