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Functional Connectivity Analysis with Voxel-Based Morphometry for Diagnosis of Mild Cognitive Impairment

机译:基于体形态的功能性连接分析,诊断温和认知障碍的诊断

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The cortical atrophy measured from the magnetic resonance imaging (MRI) data along with aberrant neuronal activation patterns from the functional MRI data have been implicated in the mild cognitive impairment (MCI), which is a potential early form of a dementia. The association between the level of cortical atrophy in the gray matter (GM) and corresponding degree of neuronal connectivity, however, has not systematically been presented. In this study, we aimed to provide anecdotal evidence that there would be a close link between the anatomical abnormality and corresponding functional aberrance associated with the neuropsychiatric condition (i.e. MCI). Firstly, the voxel-based morphometry (VBM) analysis identified the medial temporal lobe and inferior parietal lobule as the regions with substantially decreased (i.e. atrophy) and increased GM concentrations, respectively. In the subsequent functional connectivity (FC) analysis via Pearson's correlation coefficients, the FC patterns using the regions with a decreased GM concentration showed increased FC patterns (i.e. hyper-connectivity) associated with the MCI. On the other hand, the FC patterns using the seed regions with an increased GM concentration have shown decreased FC (i.e. hypo-connectivity) with the MCI in the task anti-correlated regions including superior frontal gyrus (i.e. task-negative networks or default-mode networks). These results provide a supplemental information that there may be an compensatory mechanism in the human brain function, which potentially allow to diagnose early phase of the neuropsychiatric illnesses including the Alzheimer's diseases (AD).
机译:从磁共振成像(MRI)数据测量的皮质萎缩以及来自功能MRI数据的异常神经元激活模式已经涉及轻度认知障碍(MCI),这是痴呆症的潜在早期形式。然而,灰质(GM)中皮质萎缩水平与相应程度的神经元连接之间的关联尚未得到系统地呈现。在这项研究中,我们旨在提供轶事证据,即在与神经精神状况(即MCI)相关的解剖学异常和相应的功能性像差之间存在密切联系。首先,基于体形态叶(VBM)的形态(VBM)分析鉴定了内侧颞叶和下耳瓣,因为分别具有显着降低(即萎缩)和增加的血浓度的区域。在通过Pearson的相关系数的随后的功能连接(FC)分析中,使用具有降低的GM浓度的区域的Fc图案显示了与MCI相关联的FC模式(即超连通性)增加。另一方面,使用具有增加的GM浓度的种子区域的Fc图案显示出在任务反相关区域中的MCI减少(即,Hypo-Conceptivity),包括卓越的额相回归(即任务负网络或默认 - 模式网络)。这些结果提供了辅助信息,即人脑功能可能存在补偿机制,这可能允许诊断包括阿尔茨海默氏病(AD)的神经精神疾病的早期阶段。

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