Lancaster Jack L, Tordesillas-Gutiérrez Diana, Martinez Michael, Salinas Felipe, Evans Alan, Zilles Karl, Mazziotta John C, Fox Peter T
Research Imaging Center, University of Texas Health Science Center, San Antonio, Texas, USA.
Hum Brain Mapp. 2007 Nov;28(11):1194-205. doi: 10.1002/hbm.20345.
MNI coordinates determined using SPM2 and FSL/FLIRT with the ICBM-152 template were compared to Talairach coordinates determined using a landmark-based Talairach registration method (TAL). Analysis revealed a clear-cut bias in reference frames (origin, orientation) and scaling (brain size). Accordingly, ICBM-152 fitted brains were consistently larger, oriented more nose down, and translated slightly down relative to TAL fitted brains. Whole brain analysis of MNI/Talairach coordinate disparity revealed an ellipsoidal pattern with disparity ranging from zero at a point deep within the left hemisphere to greater than 1-cm for some anterior brain areas. MNI/Talairach coordinate disparity was generally less for brains fitted using FSL. The mni2tal transform generally reduced MNI/Talairach coordinate disparity for inferior brain areas but increased disparity for anterior, posterior, and superior areas. Coordinate disparity patterns differed for brain templates (MNI-305, ICBM-152) using the same fitting method (FSL/FLIRT) and for different fitting methods (SPM2, FSL/FLIRT) using the same template (ICBM-152). An MNI-to-Talairach (MTT) transform to correct for bias between MNI and Talairach coordinates was formulated using a best-fit analysis in one hundred high-resolution 3-D MR brain images. MTT transforms optimized for SPM2 and FSL were shown to reduced group mean MNI/Talairach coordinate disparity from a 5-13 mm to 1-2 mm for both deep and superficial brain sites. MTT transforms provide a validated means to convert MNI coordinates to Talairach compatible coordinates for studies using either SPM2 or FSL/FLIRT with the ICBM-152 template.
将使用SPM2和FSL/FLIRT并结合ICBM - 152模板确定的MNI坐标,与使用基于地标的Talairach配准方法(TAL)确定的Talairach坐标进行比较。分析揭示了参考框架(原点、方向)和缩放比例(脑大小)存在明显偏差。因此,与TAL配准的脑相比,ICBM - 152配准的脑始终更大,方向更朝下,并且在垂直方向上略有平移。对MNI/Talairach坐标差异进行的全脑分析显示出一种椭圆形模式,差异范围从左半球深处的某一点为零到某些前脑区域大于1厘米。对于使用FSL配准的脑,MNI/Talairach坐标差异通常较小。mni2tal变换通常会减小脑下部区域的MNI/Talairach坐标差异,但会增加前、后和上部区域的差异。对于使用相同配准方法(FSL/FLIRT)的脑模板(MNI - 305、ICBM - 152)以及使用相同模板(ICBM - 152)的不同配准方法(SPM2、FSL/FLIRT),坐标差异模式有所不同。使用一百张高分辨率3D MR脑图像进行最佳拟合分析,制定了一种MNI到Talairach(MTT)变换,以校正MNI和Talairach坐标之间的偏差。结果表明,针对SPM2和FSL优化的MTT变换可将深部和浅表脑区的组平均MNI/Talairach坐标差异从5 - 13毫米减小到1 - 2毫米。MTT变换为使用SPM2或FSL/FLIRT并结合ICBM - 152模板的研究提供了一种经过验证的方法,可将MNI坐标转换为与Talairach兼容的坐标。