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首页> 外文期刊>The Journal of Nuclear Medicine >Progressive Disintegration of Brain Networking from Normal Aging to Alzheimer Disease: Analysis of Independent Components of F-18-FDG PET Data
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Progressive Disintegration of Brain Networking from Normal Aging to Alzheimer Disease: Analysis of Independent Components of F-18-FDG PET Data

机译:脑网络中脑网络从正常老化到阿尔茨海默病的逐步解体:F-18-FDG宠物数据的独立组分分析

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摘要

Brain connectivity has been assessed in several neurodegenerative disorders investigating the mutual correlations between predetermined regions or nodes. Selective breakdown of brain networks during progression from normal aging to Alzheimer disease dementia (AD) has also been observed. Methods: We implemented independent-component analysis of F-18-FDG PET data in 5 groups of subjects with cognitive states ranging from normal aging to AD-including mild cognitive impairment (MCI) not converting or converting to AD-to disclose the spatial distribution of the independent components in each cognitive state and their accuracy in discriminating the groups. Results: We could identify spatially distinct independent components in each group, with generation of local circuits increasing proportionally to the severity of the disease. AD-specific independent components first appeared in the late-MCI stage and could discriminate converting MCI and AD from nonconverting MCI with an accuracy of 83.5%. Progressive disintegration of the intrinsic networks from normal aging to MCI to AD was inversely proportional to the conversion time. Conclusion: Independent-component analysis of 18F-FDG PET data showed a gradual disruption of functional brain connectivity with progression of cognitive decline in AD. This information might be useful as a prognostic aid for individual patients and as a surrogate biomarker in intervention trials.
机译:在若干神经变性障碍中评估了脑连接,研究了预定区域或节点之间的互相关性。也观察到从正常老化到阿尔茨海默病痴呆(AD)的进展过程中脑网络的选择性细分。方法:我们在5组受试者中实施了与认知状态的F-18-FDG PET数据的独立组分分析,从正常老化到广告 - 包括轻度认知障碍(MCI),不转换或转换为广告 - 以披露空间分布在每个认知状态下的独立组分及其准确性在鉴别组时。结果:我们可以识别每组的空间不同的独立组分,产生局部电路的产生与疾病的严重程度成比例地增加。特定于特定的独立组分首先出现在晚期MCI阶段,可以将MCI和AD与非变化的MCI分离,精度为83.5%。从正常老化到MCI到广告的逐渐解体与转换时间成反比。结论:18F-FDG宠物数据的独立组分分析表明,随着认知下降的进展,功能性脑连通性逐渐破坏。该信息可能是对个体患者的预后辅助剂,作为干预试验中的替代生物标志物。

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