Caspers Julian, Zilles Karl, Amunts Katrin, Laird Angela R, Fox Peter T, Eickhoff Simon B
Institute of Neuroscience and Medicine (INM-1, INM-2), Research Centre Jülich, Germany; Department of Diagnostic and Interventional Radiology, University Dusseldorf, Medical Faculty, D-40225, Dusseldorf, Germany; C. and O. Vogt Institute for Brain Research, Heinrich-Heine-University Düsseldorf, Germany.
Hum Brain Mapp. 2014 Jun;35(6):2754-67. doi: 10.1002/hbm.22364. Epub 2013 Sep 13.
The ventral stream of the human extrastriate visual cortex shows a considerable functional heterogeneity from early visual processing (posterior) to higher, domain-specific processing (anterior). The fusiform gyrus hosts several of those "high-level" functional areas. We recently found a subdivision of the posterior fusiform gyrus on the microstructural level, that is, two distinct cytoarchitectonic areas, FG1 and FG2 (Caspers et al., Brain Structure & Function, 2013). To gain a first insight in the function of these two areas, here we studied their behavioral involvement and coactivation patterns by means of meta-analytic connectivity modeling based on the BrainMap database (www.brainmap.org), using probabilistic maps of these areas as seed regions. The coactivation patterns of the areas support the concept of a common involvement in a core network subserving different cognitive tasks, that is, object recognition, visual language perception, or visual attention. In addition, the analysis supports the previous cytoarchitectonic parcellation, indicating that FG1 appears as a transitional area between early and higher visual cortex and FG2 as a higher-order one. The latter area is furthermore lateralized, as it shows strong relations to the visual language processing system in the left hemisphere, while its right side is stronger associated with face selective regions. These findings indicate that functional lateralization of area FG2 relies on a different pattern of connectivity rather than side-specific cytoarchitectonic features.
人类纹外视觉皮层的腹侧通路从早期视觉处理(后部)到更高层次的特定领域处理(前部)表现出相当大的功能异质性。梭状回包含几个这样的“高级”功能区。我们最近在微观结构层面发现了后梭状回的一个细分,即两个不同的细胞构筑区,FG1和FG2(卡斯佩斯等人,《脑结构与功能》,2013年)。为了初步了解这两个区域的功能,我们在此通过基于BrainMap数据库(www.brainmap.org)的元分析连接模型,以这些区域的概率图作为种子区域,研究了它们的行为参与和共激活模式。这些区域的共激活模式支持了它们共同参与一个服务于不同认知任务的核心网络的概念,即物体识别、视觉语言感知或视觉注意力。此外,分析支持了先前的细胞构筑分区,表明FG1表现为早期和高级视觉皮层之间的过渡区域,而FG2是一个更高层次的区域。后一个区域进一步表现出偏侧化,因为它与左半球的视觉语言处理系统有很强的联系,而其右侧与面部选择性区域的联系更强。这些发现表明,FG2区域的功能偏侧化依赖于不同的连接模式,而不是特定于一侧的细胞构筑特征。