Lee Jong-Min, Yoon Uicheul, Kim Jae-Jin, Kim In Young, Lee Dong Soo, Kwon Jun Soo, Kim Sun I
Department of Biomedical Engineering, Hanyang University, Seoul, Korea.
IEEE Trans Biomed Eng. 2004 Aug;51(8):1494-8. doi: 10.1109/TBME.2004.831543.
We investigated hemispheric asymmetry using the fractal dimension (FD) of the skeletonized cerebral surface. Sixty-two T1-weighted magnetic resonance imaging volumes from normal Korean adults were used. The skeletonization of binary volume data, which corresponded to the union of the gray matter and cerebrospinal flow classified by fuzzy clustering, was performed slice by slice in the sagittal direction, and then skeletonized slices were integrated into the three-dimensional (3-D) hemisphere. Finally, the FD of the 3-D skeletonized cerebral surface was calculated using the box-counting method. We measured the FD of the skeletonized cerebral surface and the volumes of intracranial gray matter and white matter for the whole hemispheres and obtained the hemispheric asymmetries of each measurement. The FD, the gray matter, and the white matter volumes for the whole hemispheres decreased in the old group. The asymmetry of the FD revealed a significant right-greater-than-left asymmetry showed rightward, but did not change according to age and gender. None of the intracranial gray matter or white matter volumes showed any significant asymmetric changes. It could be said that the FD of the skeletonized cerebral surface is a novel measure of cerebral asymmetry.
我们使用大脑表面骨架化的分形维数(FD)来研究半球不对称性。我们使用了来自正常韩国成年人的62个T1加权磁共振成像容积数据。对应于通过模糊聚类分类的灰质和脑脊髓液流联合的二值化容积数据,在矢状方向上逐片进行骨架化处理,然后将骨架化的切片整合到三维(3D)半球中。最后,使用盒计数法计算3D骨架化大脑表面的FD。我们测量了整个半球骨架化大脑表面的FD以及颅内灰质和白质的体积,并获得了每项测量的半球不对称性。老年组中整个半球的FD、灰质和白质体积均减小。FD的不对称性显示出显著的右大于左的不对称性,呈向右趋势,但不随年龄和性别而变化。颅内灰质或白质体积均未显示出任何显著的不对称变化。可以说,骨架化大脑表面的FD是一种新的大脑不对称性测量方法。