Department of Biomedical Engineering, Gachon University, South Korea.
J Neurosci Methods. 2012 Apr 30;206(1):46-53. doi: 10.1016/j.jneumeth.2012.02.010. Epub 2012 Feb 16.
Analysis of cortical patterns requires accurate cortical surface registration. Many researchers map the cortical surface onto a unit sphere and perform registration of two images defined on the unit sphere. Here we have developed a novel registration framework for the cortical surface based on spherical thin-plate splines. Small-scale composition of spherical thin-plate splines was used as the geometric interpolant to avoid folding in the geometric transform. Using an automatic algorithm based on anisotropic skeletons, we extracted seven sulcal lines, which we then incorporated as landmark information. Mean curvature was chosen as an additional feature for matching between spherical maps. We employed a two-term cost function to encourage matching of both sulcal lines and the mean curvature between the spherical maps. Application of our registration framework to fifty pairwise registrations of T1-weighted MRI scans resulted in improved registration accuracy, which was computed from sulcal lines. Our registration approach was tested as an additional procedure to improve an existing surface registration algorithm. Our registration framework maintained an accurate registration over the sulcal lines while significantly increasing the cross-correlation of mean curvature between the spherical maps being registered.
皮质模式分析需要精确的皮质表面配准。许多研究人员将皮质表面映射到单位球上,并对定义在单位球上的两个图像进行配准。在这里,我们基于球扁壳样条开发了一种新的皮质表面配准框架。使用小尺度的球扁壳样条作为几何插值,以避免几何变换中的折叠。我们使用基于各向异性骨架的自动算法提取了 7 条脑沟线,并将其作为地标信息。选择平均曲率作为球面图之间匹配的附加特征。我们采用两项代价函数来鼓励球面图之间的脑沟线和平均曲率的匹配。我们的配准框架应用于 50 对 T1 加权 MRI 扫描的配准,结果表明,从脑沟线计算得到的配准精度得到了提高。我们的配准方法被测试作为改进现有表面配准算法的附加步骤。我们的配准框架在保持脑沟线精确配准的同时,显著提高了被配准的球面图之间平均曲率的互相关。