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Automated measurement of three-dimensional cerebral cortical thickness in Alzheimer’s patients using localized gradient vector trajectory in fuzzy membership maps

机译:在模糊隶属图中使用局部梯度矢量轨迹自动测量阿尔茨海默氏病患者的三维大脑皮层厚度

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Our purpose in this study was to develop an automated method for measuring three-dimensional (3D) cerebral cortical thicknesses in patients with Alzheimer’s disease (AD) using magnetic resonance (MR) images. Our proposed method consists of mainly three steps. First, a brain parenchymal region was segmented based on brain model matching. Second, a 3D fuzzy membership map for a cerebral cortical region was created by applying a fuzzy c-means (FCM) clustering algorithm to T1-weighted MR images. Third, cerebral cortical thickness was three- dimensionally measured on each cortical surface voxel by using a localized gradient vector trajectory in a fuzzy membership map. Spherical models with 3 mm artificial cortical regions, which were produced using three noise levels of 2%, 5%, and 10%, were employed to evaluate the proposed method. We also applied the proposed method to T1-weighted images obtained from 20 cases, i.e., 10 clinically diagnosed AD cases and 10 clinically normal (CN) subjects. The thicknesses of the 3 mm artificial cortical regions for spherical models with noise levels of 2%, 5%, and 10% were measured by the proposed method as 2.953 ± 0.342, 2.953 ± 0.342 and 2.952 ± 0.343 mm, respectively. Thus the mean thicknesses for the entire cerebral lobar region were 3.1 ± 0.4 mm for AD patients and 3.3 ± 0.4 mm for CN subjects, respectively (p
机译:我们在这项研究中的目的是开发一种使用磁共振(MR)图像测量阿尔茨海默病(AD)患者的三维(3D)脑皮质厚度的自动化方法。我们提出的方法主要包括三个步骤。首先,根据脑模型匹配对脑实质区域进行分割。其次,通过对T1加权MR图像应用模糊c均值(FCM)聚类算法,创建大脑皮质区域的3D模糊隶属图。第三,通过使用模糊隶属图中的局部梯度矢量轨迹,在每个皮质表面体素上三维测量大脑皮质厚度。球形模型具有3毫米的人造皮层区域,这是使用3%,2%,5%和10%的噪声水平生成的,用于评估该方法。我们还将提出的方法应用于从20例患者中获得的T1加权图像,即10例临床诊断为AD的患者和10例临床正常(CN)的患者。通过提出的方法测量的噪声水平分别为2%,5%和10%的球形模型的3 mm人造皮质区域的厚度分别为2.953±0.342、2.953±0.342和2.952±0.343 mm。因此,AD患者整个脑叶区域的平均厚度分别为3.1±0.4 mm和CN患者为3.3±0.4 mm(p

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