Lorenz Simon, Weiner Kevin S, Caspers Julian, Mohlberg Hartmut, Schleicher Axel, Bludau Sebastian, Eickhoff Simon B, Grill-Spector Kalanit, Zilles Karl, Amunts Katrin
Institute of Neurosciences and Medicine (INM-1), Research Centre Jülich, Jülich, Germany.
Department of Psychology.
Cereb Cortex. 2017 Jan 1;27(1):373-385. doi: 10.1093/cercor/bhv225.
Areas of the fusiform gyrus (FG) within human ventral temporal cortex (VTC) process high-level visual information associated with faces, limbs, words, and places. Since classical cytoarchitectonic maps do not adequately reflect the functional and structural heterogeneity of the VTC, we studied the cytoarchitectonic segregation in a region, which is rostral to the recently identified cytoarchitectonic areas FG1 and FG2. Using an observer-independent and statistically testable parcellation method, we identify 2 new areas, FG3 and FG4, in 10 human postmortem brains on the mid-FG. The mid-fusiform sulcus reliably identifies the cytoarchitectonic transition between FG3 and FG4. We registered these cytoarchitectonic areas to the common reference space of the single-subject Montreal Neurological Institute (MNI) template and generated probability maps, which reflect the intersubject variability of both areas. Future studies can relate in vivo neuroimaging data with these microscopically defined cortical areas to functional parcellations. We discuss these results in the context of both large-scale functional maps and fine-scale functional clusters that have been identified within the human VTC. We propose that our observer-independent cytoarchitectonic parcellation of the FG better explains the functional heterogeneity of the FG compared with the homogeneity of classic cytoarchitectonic maps.
人类腹侧颞叶皮质(VTC)内的梭状回(FG)区域处理与面孔、肢体、单词和地点相关的高级视觉信息。由于经典的细胞构筑图谱不能充分反映VTC的功能和结构异质性,我们研究了一个位于最近确定的细胞构筑区域FG1和FG2前方区域的细胞构筑分隔。使用一种独立于观察者且可进行统计检验的分割方法,我们在10个人类尸检大脑的FG中部识别出2个新区域,即FG3和FG4。梭状回中部沟可靠地识别出FG3和FG4之间的细胞构筑过渡。我们将这些细胞构筑区域注册到单受试者蒙特利尔神经学研究所(MNI)模板的共同参考空间,并生成概率图,该图反映了两个区域的个体间变异性。未来的研究可以将体内神经成像数据与这些微观定义的皮质区域关联到功能分割上。我们在已在人类VTC内确定的大规模功能图谱和精细尺度功能簇的背景下讨论这些结果。我们提出,与经典细胞构筑图谱的同质性相比,我们对FG进行的独立于观察者的细胞构筑分割能更好地解释FG的功能异质性。