First Department of Neurology, St. Anne's Teaching Hospital and School of Medicine, Masaryk University, Pekarska 53, 656 91, Brno, Czech Republic.
Applied Neuroscience Research Group, CEITEC-Central European Institute of Technology, Masaryk University, Brno, Czech Republic.
J Neural Transm (Vienna). 2017 Dec;124(12):1607-1619. doi: 10.1007/s00702-017-1789-5. Epub 2017 Sep 30.
Visual processing difficulties are often present in Alzheimer's disease (AD), even in its pre-dementia phase (i.e. in mild cognitive impairment, MCI). The default mode network (DMN) modulates the brain connectivity depending on the specific cognitive demand, including visual processes. The aim of the present study was to analyze specific changes in connectivity of the posterior DMN node (i.e. the posterior cingulate cortex and precuneus, PCC/P) associated with visual processing in 17 MCI patients and 15 AD patients as compared to 18 healthy controls (HC) using functional magnetic resonance imaging. We used psychophysiological interaction (PPI) analysis to detect specific alterations in PCC connectivity associated with visual processing while controlling for brain atrophy. In the HC group, we observed physiological changes in PCC connectivity in ventral visual stream areas and with PCC/P during the visual task, reflecting the successful involvement of these regions in visual processing. In the MCI group, the PCC connectivity changes were disturbed and remained significant only with the anterior precuneus. In between-group comparison, we observed significant PPI effects in the right superior temporal gyrus in both MCI and AD as compared to HC. This change in connectivity may reflect ineffective "compensatory" mechanism present in the early pre-dementia stages of AD or abnormal modulation of brain connectivity due to the disease pathology. With the disease progression, these changes become more evident but less efficient in terms of compensation. This approach can separate the MCI from HC with 77% sensitivity and 89% specificity.
视觉处理困难在阿尔茨海默病(AD)中很常见,甚至在其痴呆前阶段(即轻度认知障碍,MCI)中也是如此。默认模式网络(DMN)根据特定的认知需求调节大脑连接,包括视觉过程。本研究的目的是使用功能磁共振成像分析 17 名 MCI 患者和 15 名 AD 患者与 18 名健康对照组(HC)相比,与视觉处理相关的后 DMN 节点(即后扣带回和楔前叶,PCC/P)的连接的特定变化,使用心理生理交互(PPI)分析来检测与视觉处理相关的 PCC 连接的特定改变,同时控制脑萎缩。在 HC 组中,我们观察到腹侧视觉流区和 PCC/P 在视觉任务期间 PCC 连接的生理变化,反映了这些区域在视觉处理中的成功参与。在 MCI 组中,PCC 连接的变化受到干扰,仅与前楔前叶保持显著相关。在组间比较中,我们观察到 MCI 和 AD 组右侧颞上回的 PPI 效应显著,与 HC 相比。这种连接变化可能反映了 AD 痴呆前阶段存在的无效“代偿”机制,或者由于疾病病理导致的大脑连接异常调节。随着疾病的进展,这些变化在补偿方面变得更加明显,但效率更低。这种方法可以以 77%的敏感性和 89%的特异性将 MCI 与 HC 区分开来。