Alzheimer Center Amsterdam, Department of Neurology, Amsterdam Neuroscience, Vrije Universiteit Amsterdam, Amsterdam UMC, Amsterdam, the Netherlands; Department of Clinical Neurophysiology, Amsterdam Neuroscience, Vrije Universiteit Amsterdam, Amsterdam UMC, Amsterdam, the Netherlands.
Department of Clinical Neurophysiology, Amsterdam Neuroscience, Vrije Universiteit Amsterdam, Amsterdam UMC, Amsterdam, the Netherlands.
Neurobiol Aging. 2020 Dec;96:1-11. doi: 10.1016/j.neurobiolaging.2020.07.029. Epub 2020 Aug 5.
Patients with posterior cortical atrophy (PCA-AD) show more severe visuospatial and perceptual deficits than those with typical AD (tAD). The aim of this study was to investigate whether functional alterations measured by electroencephalography can help understand the mechanisms that explain this clinical heterogeneity. 21-channel electroencephalography recordings of 29 patients with PCA-AD were compared with 29 patients with tAD and 29 controls matched for age, gender, and disease severity. Patients with PCA-AD and tAD both showed a global decrease in fast and increase in slow oscillatory activity compared with controls. This pattern was, however, more profound in patients with PCA-AD which was driven by more extensive slowing of the posterior regions. Alpha band functional connectivity showed a similar decrease in PCA-AD and tAD. Compared with controls, a less integrated network topology was observed in PCA-AD, with a decrease of posterior and an increase of frontal hubness. In PCA-AD, decreased right parietal peak frequency correlated with worse performance on visual tasks. Regional vulnerability of the posterior network might explain the atypical pattern of neurodegeneration in PCA-AD.
后部皮质萎缩(PCA-AD)患者比典型 AD(tAD)患者表现出更严重的视空间和知觉缺陷。本研究旨在探讨通过脑电图测量的功能改变是否有助于理解解释这种临床异质性的机制。与 29 名年龄、性别和疾病严重程度匹配的 tAD 患者和 29 名对照组相比,对 29 名 PCA-AD 患者进行了 21 通道脑电图记录。与对照组相比,PCA-AD 和 tAD 患者的快波和慢波活动均呈全球性减少和增加。然而,这种模式在 PCA-AD 患者中更为明显,这是由于后部区域的减速更为广泛。α 波段功能连接在 PCA-AD 和 tAD 中也表现出相似的减少。与对照组相比,PCA-AD 中观察到网络拓扑集成度降低,后部减少,额部增加。在 PCA-AD 中,右顶叶峰值频率降低与视觉任务表现较差相关。后部网络的区域脆弱性可能解释了 PCA-AD 中神经退行性变的非典型模式。