Karas G B, Burton E J, Rombouts S A R B, van Schijndel R A, O'Brien J T, Scheltens P h, McKeith I G, Williams D, Ballard C, Barkhof F
Department of Diagnostic Radiology, Vrije Universiteit Medical Center, Amsterdam, The Netherlands.
Neuroimage. 2003 Apr;18(4):895-907. doi: 10.1016/s1053-8119(03)00041-7.
Voxel-based morphometry (VBM) has already been applied to MRI scans of patients with Alzheimer's disease (AD). The results of these studies demonstrated atrophy of the hippocampus, temporal pole, and insula, but did not describe any global brain changes or atrophy of deep cerebral structures. We propose an optimized VBM method, which accounts for these shortcomings. Additional processing steps are incorporated in the method, to ensure that the whole spectrum of brain atrophy is visualized. A local group template was created to avoid registration bias, morphological opening was performed to eliminate cerebrospinal fluid voxel misclassifications, and volume preserving modulation was used to correct for local volume changes. Group differences were assessed and thresholded at P < 0.05 (corrected). Our results confirm earlier findings, but additionally we demonstrate global cortical atrophy with sparing of the sensorimotor cortex, occipital poles, and cerebellum. Moreover, we show atrophy of the caudate head nuclei and medial thalami. Our findings are in full agreement with the established neuropathological descriptions, offering a comprehensive view of atrophy patterns in AD.
基于体素的形态测量学(VBM)已应用于阿尔茨海默病(AD)患者的磁共振成像(MRI)扫描。这些研究结果显示海马体、颞极和脑岛萎缩,但未描述全脑变化或深部脑结构萎缩情况。我们提出一种优化的VBM方法,该方法弥补了这些不足。该方法纳入了额外的处理步骤,以确保可视化全脑萎缩范围。创建了一个局部组模板以避免配准偏差,进行形态学开运算以消除脑脊液体素误分类,并使用体积保持调制来校正局部体积变化。评估组间差异并将阈值设定为P < 0.05(校正后)。我们的结果证实了早期研究结果,但此外我们还证明了除感觉运动皮层、枕极和小脑外的全脑皮质萎缩。此外,我们还显示了尾状核头和内侧丘脑萎缩。我们的发现与既定的神经病理学描述完全一致,提供了AD萎缩模式的全面视图。