Viceic Dragana, Campos Ruth, Fornari Eleonora, Spierer Lucas, Meuli Reto, Clarke Stephanie, Thiran Jean-Philippe
Signal Processing Laboratory (LTS5), Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.
Neuroimage. 2009 Jan 1;44(1):145-53. doi: 10.1016/j.neuroimage.2008.07.051. Epub 2008 Aug 8.
Interindividual functional and structural brain variability is a major problem in group studies, in which very focal activations are expected. Architectonic studies have shown that the human primary auditory area, which is located with a great constancy on Heschl's gyrus, is surrounded by several nonprimary auditory areas with surface areas of 40-310 mm(2). The small size of the latter makes them only partially accessible to fMRI group studies, because of imprecision in realignment when using currently available registration procedures. We describe here a new method for sulcal realignment using a non-rigid local landmark-based registration and show its application to the registration of fMRI acquisitions on the supratemporal plane. After an affine global voxel-based registration, which transforms all brains into the same standard space, we propose a non-rigid local landmark-based registration method based on thin-plate splines for matching the two sulci delimiting Heschl's gyrus of a given brain to the corresponding sulci of a reference brain. We show here that, in comparison with global affine and non-rigid approaches, our method leads in group studies to i) a much more precise alignment of Heschl's gyrus; and ii) a putatively optimal superposition of functionally corresponding areas on and around Heschl's gyrus.
个体间大脑功能和结构的变异性是群体研究中的一个主要问题,在这类研究中预期会出现非常局部的激活。解剖学研究表明,人类初级听觉区恒定地位于颞横回上,其周围环绕着几个非初级听觉区,表面积为40 - 310平方毫米。由于使用当前可用的配准程序时重新对齐存在不精确性,后者的小尺寸使得它们在功能磁共振成像(fMRI)群体研究中只能部分被检测到。我们在此描述一种使用基于非刚性局部地标配准的脑沟重新对齐新方法,并展示其在颞上平面fMRI采集配准中的应用。在基于仿射全局体素的配准将所有大脑转换到相同标准空间之后,我们提出一种基于薄板样条的非刚性局部地标配准方法,用于将给定大脑中界定颞横回的两个脑沟与参考大脑的相应脑沟进行匹配。我们在此表明,与全局仿射和非刚性方法相比,我们的方法在群体研究中能够实现:i)颞横回更精确的对齐;ii)颞横回及其周围功能对应区域的假定最优叠加。