Brain Center Rudolf Magnus, Department of Psychiatry, University Medical Center Utrecht, The Netherlands.
Brain Center Rudolf Magnus, Department of Neurology, University Medical Center Utrecht, The Netherlands.
Neuroimage. 2018 Apr 15;170:249-256. doi: 10.1016/j.neuroimage.2016.12.069. Epub 2016 Dec 28.
The cerebral cortex displays substantial variation in cellular architecture, a regional patterning that has been of great interest to anatomists for centuries. In 1925, Constantin von Economo and George Koskinas published a detailed atlas of the human cerebral cortex, describing a cytoarchitectonic division of the cortical mantle into over 40 distinct areas. Von Economo and Koskinas accompanied their seminal work with large photomicrographic plates of their histological slides, together with tables containing for each described region detailed morphological layer-specific information on neuronal count, neuron size and thickness of the cortical mantle. Here, we aimed to make this legacy data accessible and relatable to in vivo neuroimaging data by constructing a digital Von Economo - Koskinas atlas compatible with the widely used FreeSurfer software suite. In this technical note we describe the procedures used for manual segmentation of the Von Economo - Koskinas atlas onto individual T1 scans and the subsequent construction of the digital atlas. We provide the files needed to run the atlas on new FreeSurfer data, together with some simple code of how to apply the atlas to T1 scans within the FreeSurfer software suite. The digital Von Economo - Koskinas atlas is easily applicable to modern day anatomical MRI data and is made publicly available online.
大脑皮层显示出大量的细胞结构变异,这种区域模式是解剖学家几个世纪以来非常感兴趣的。1925 年,康斯坦丁·冯·埃科诺莫(Constantin von Economo)和乔治·科斯基纳斯(George Koskinas)出版了一本详细的人类大脑皮层图谱,描述了皮质覆盖层的细胞构筑分区,分为 40 多个不同的区域。冯·埃科诺莫(von Economo)和科斯基纳斯(Koskinas)在他们的开创性工作中,附有大量的组织学幻灯片的大型摄影照片,并附有表格,其中包含每个描述区域的详细形态层特异性神经元计数,神经元大小和皮质厚度的信息。在这里,我们旨在通过构建与广泛使用的 FreeSurfer 软件套件兼容的数字化冯·埃科诺莫-科斯基纳斯图谱,使这些传统数据能够与体内神经影像学数据相关联。在本技术说明中,我们描述了将冯·埃科诺莫-科斯基纳斯图谱手动分割到单个 T1 扫描上的过程,以及随后构建数字图谱的过程。我们提供了在新的 FreeSurfer 数据上运行图谱所需的文件,并提供了一些如何在 FreeSurfer 软件套件内的 T1 扫描中应用图谱的简单代码。数字化的冯·埃科诺莫-科斯基纳斯图谱很容易适用于现代解剖学 MRI 数据,并在网上公开提供。