Blumensath Thomas, Behrens Timothy E J, Smith Stephen M
Oxford Centre for Functional MRI of the Brain (FMRIB Centre), University of Oxford, Oxford, UK.
Med Image Comput Comput Assist Interv. 2012;15(Pt 2):188-95. doi: 10.1007/978-3-642-33418-4_24.
We propose a new method to parcellate the cerebral cortex based on spatial dependancy in the fluctuations observed with functional Magnetic Resonance Imaging (fMRI) during rest. Our surface-based approach uses a region growing method. In contrast to previous methods, locally stable seed points are identified on the cortical surface and these are grown into a (relatively large 1000 to 5000) number of spatially contiguous regions on both hemispheres. Spatially constrained hierarchical clustering is then used to further combine these regions in a hierarchical tree. Using short-TR resting state fMRI data, this approach allows a subject specific parcellation of the cortex into anatomically plausible subregions, identified with high scan-to-scan reproducibility and with borders that delineate clear changes in functional connectivity.
我们提出了一种基于静息状态下功能磁共振成像(fMRI)观察到的波动中的空间依赖性来对大脑皮层进行分区的新方法。我们基于表面的方法使用区域生长法。与先前的方法不同,在皮质表面识别出局部稳定的种子点,并将这些种子点生长成两个半球上数量相对较多(1000到5000个)的空间连续区域。然后使用空间受限的层次聚类将这些区域进一步组合成一个层次树。使用短TR静息态fMRI数据,这种方法允许将皮质进行个体特异性分区,划分为解剖学上合理的子区域,具有高扫描间可重复性,且边界描绘了功能连接的明显变化。