Wohlschläger A M, Specht K, Lie C, Mohlberg H, Wohlschläger A, Bente K, Pietrzyk U, Stöcker T, Zilles K, Amunts K, Fink G R
Institut für Medizin, Forschungszentrum Jülich, Germany.
Neuroimage. 2005 May 15;26(1):73-82. doi: 10.1016/j.neuroimage.2005.01.021.
Using functional MRI, we characterized field sign maps of the occipital cortex and created three-dimensional maps of these areas. By averaging the individual maps into group maps, probability maps of functionally defined V1 or V2 were determined and compared to anatomical probability maps of Brodmann areas BA17 and BA18 derived from cytoarchitectonic analysis (Amunts, K., Malikovic, A., Mohlberg, H., Schormann, T., Zilles, K., 2000. Brodmann's areas 17 and 18 brought into stereotaxic space-where and how variable? NeuroImage 11, 66-84). Comparison of areas BA17/V1 and BA18/V2 revealed good agreement of the anatomical and functional probability maps. Taking into account that our functional stimulation (due to constraints of the visual angle of stimulation achievable in the MR scanner) only identified parts of V1 and V2, for statistical evaluation of the spatial correlation of V1 and BA17, or V2 and BA18, respectively, the a priori measure kappa was calculated testing the hypothesis that a region can only be part of functionally defined V1 or V2 if it is also in anatomically defined BA17 or BA18, respectively. kappa = 1 means the hypothesis is fully true, kappa = 0 means functionally and anatomically defined visual areas are independent. When applying this measure to the probability maps, kappa was equal to 0.84 for both V1/BA17 and V2/BA18. The data thus show a good correspondence of functionally and anatomically derived segregations of early visual processing areas and serve as a basis for employing anatomical probability maps of V1 and V2 in group analyses to characterize functional activations of early visual processing areas.
我们使用功能磁共振成像(fMRI)对枕叶皮质的视野征图谱进行了特征描述,并创建了这些区域的三维图谱。通过将个体图谱平均为组图谱,确定了功能定义的V1或V2的概率图谱,并将其与基于细胞构筑分析得出的布罗德曼区域BA17和BA18的解剖概率图谱进行比较(Amunts, K., Malikovic, A., Mohlberg, H., Schormann, T., Zilles, K., 2000. 布罗德曼区域17和18纳入立体定向空间——位置及变异情况如何?《神经影像学》11, 66 - 84)。BA17/V1和BA18/V2区域的比较显示解剖概率图谱与功能概率图谱具有良好的一致性。考虑到我们的功能刺激(由于磁共振扫描仪中可实现的刺激视角限制)仅识别了V1和V2的部分区域,为了分别对V1与BA17或V2与BA18的空间相关性进行统计评估,计算了先验测量kappa,以检验以下假设:一个区域只有在解剖学上也分别位于定义的BA17或BA18中时,才可能是功能定义的V1或V2的一部分。kappa = 1表示该假设完全正确,kappa = 0表示功能和解剖学定义的视觉区域相互独立。将此测量应用于概率图谱时,V1/BA17和V2/BA18的kappa均等于0.84。因此,数据表明早期视觉处理区域在功能和解剖学上的分离具有良好的对应关系,并为在组分析中使用V1和V2的解剖概率图谱来表征早期视觉处理区域的功能激活提供了基础。