Shi Yonggang, Thompson Paul M, de Zubicaray Greig I, Rose Stephen E, Tu Zhuowen, Dinov Ivo, Toga Arthur W
Laboratory of Neuro Imaging, Department of Neurology, UCLA School of Medicine, Los Angeles, CA 90095, USA.
Neuroimage. 2007 Sep 1;37(3):792-807. doi: 10.1016/j.neuroimage.2007.05.016. Epub 2007 May 23.
We propose in this paper a new method for the mapping of hippocampal (HC) surfaces to establish correspondences between points on HC surfaces and enable localized HC shape analysis. A novel geometric feature, the intrinsic shape context, is defined to capture the global characteristics of the HC shapes. Based on this intrinsic feature, an automatic algorithm is developed to detect a set of landmark curves that are stable across population. The direct map between a source and target HC surface is then solved as the minimizer of a harmonic energy function defined on the source surface with landmark constraints. For numerical solutions, we compute the map with the approach of solving partial differential equations on implicit surfaces. The direct mapping method has the following properties: (1) it has the advantage of being automatic; (2) it is invariant to the pose of HC shapes. In our experiments, we apply the direct mapping method to study temporal changes of HC asymmetry in Alzheimer's disease (AD) using HC surfaces from 12 AD patients and 14 normal controls. Our results show that the AD group has a different trend in temporal changes of HC asymmetry than the group of normal controls. We also demonstrate the flexibility of the direct mapping method by applying it to construct spherical maps of HC surfaces. Spherical harmonics (SPHARM) analysis is then applied and it confirms our results on temporal changes of HC asymmetry in AD.
在本文中,我们提出了一种用于海马体(HC)表面映射的新方法,以建立HC表面上各点之间的对应关系,并实现局部HC形状分析。我们定义了一种新颖的几何特征——内在形状上下文,以捕捉HC形状的全局特征。基于此内在特征,开发了一种自动算法来检测一组在不同个体间稳定的地标曲线。然后,将源HC表面与目标HC表面之间的直接映射求解为在具有地标约束的源表面上定义的调和能量函数的最小值。对于数值解,我们采用在隐式曲面上求解偏微分方程的方法来计算映射。直接映射方法具有以下特性:(1)具有自动性的优点;(2)对HC形状的姿态不变。在我们的实验中,我们使用12名阿尔茨海默病(AD)患者和14名正常对照的HC表面,应用直接映射方法研究AD中海马体不对称性的时间变化。我们的结果表明,AD组在海马体不对称性时间变化方面的趋势与正常对照组不同。我们还通过将其应用于构建HC表面的球面映射来展示直接映射方法的灵活性。然后应用球谐分析(SPHARM),它证实了我们关于AD中海马体不对称性时间变化的结果。