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首页> 外文期刊>The Journal of Nuclear Medicine >Loss of Olfactory Tract Integrity Affects Cortical Metabolism in the Brain and Olfactory Regions in Aging and Mild Cognitive Impairment
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Loss of Olfactory Tract Integrity Affects Cortical Metabolism in the Brain and Olfactory Regions in Aging and Mild Cognitive Impairment

机译:嗅觉完整性的丧失影响衰老和轻度认知障碍的大脑和嗅觉区域的皮质代谢

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摘要

Olfactory dysfunction is an early feature of Alzheimer disease. This study used multimodal imaging of PET and 18F-FDG combined with diffusion tensor imaging (DTI) to investigate the association of fiber tract integrity in the olfactory tract with cortical glucose metabolism in subjects with mild cognitive impairment (MCI) and normal controls. We hypothesized that MCI subjects would show loss of olfactory tract integrity and may have altered associations with glucose metabolism. Methods: Subjects diagnosed with amnestic MCI (n = 12) and normal controls (n = 23) received standard brain 18F-FDG PET and DTI with 32 gradient directions on a 3-T MR imaging scanner. Fractional anisotropy (FA) maps were generated. Voxelwise correlation analysis of olfactory tract FA values with 18F-FDG PET images was performed. Results: Integrated analysis over all subjects indicated a positive correlation between white matter integrity in the olfactory tract and metabolic activity in olfactory processing structures, including the rostral prefrontal cortex, dorsomedial thalamus, hypothalamus, orbitofrontal cortex, and uncus, and in the superior temporal gyrus, insula, and anterior cingulate cortex. Subjects with MCI, compared with normal controls, showed differential associations of olfactory tract integrity with medial temporal lobe and posterior cortical structures. Conclusion: These findings indicate that impairment of axonal integrity or neuronal loss may be linked to functional metabolic changes and that disease-specific neurodegeneration may affect this relationship. Multimodal imaging using 18F-FDG PET and DTI may provide better insights into aging and neurodegenerative processes.
机译:嗅觉功能障碍是阿尔茨海默氏病的早期特征。这项研究使用PET和18F-FDG的多峰成像与弥散张量成像(DTI)结合,以研究轻度认知障碍(MCI)和正常对照组的嗅觉中纤维束完整性与皮质葡萄糖代谢的关系。我们假设MCI受试者会表现出嗅觉完整性丧失,并且可能与葡萄糖代谢发生改变。方法:诊断为记忆删除性MCI(n = 12)和正常对照(n = 23)的受试者在3-T MR成像扫描仪上接受具有32个梯度方向的标准大脑18F-FDG PET和DTI。生成分数各向异性(FA)图。进行嗅觉FA值与18F-FDG PET图像的Voxelwise相关分析。结果:对所有受试者的综合分析表明,嗅道中的白质完整性与嗅觉加工结构(包括延髓前额叶皮层,背丘脑,下丘脑,眶额叶皮层和and孔)以及颞上回的代谢活动之间呈正相关。 ,岛状和前扣带回皮层。与正常对照组相比,患有MCI的受试者表现出嗅觉完整性与内侧颞叶和后皮质结构的差异关联。结论:这些发现表明轴突完整性受损或神经元丧失可能与功能性代谢改变有关,而疾病特异性神经退行性变可能影响这种关系。使用18F-FDG PET和DTI进行多峰成像可以提供有关衰老和神经退行性过程的更好见解。

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