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Cognitive MMN and P300 in mild cognitive impairment and Alzheimer's disease: A high density EEG-3D vector field tomography approach

机译:在轻度认知障碍和阿尔茨海默病中的认知MMN和P300:高密度EEG-3D矢量场断层扫描方法

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Precise preclinical detection of dementia for effective treatment and stage monitoring is of great importance. Miscellaneous types of biomarkers, e.g., biochemical, genetic, neuroimaging, and physiological, have been proposed to diagnose Alzheimer's disease (AD), the usual suspect behind manifested cognitive decline, and mild cognitive impairment (MCI), a neuropathology prior to AD that does not affect cognitive functions. Event related potential (ERP) methods constitute a non-invasive, inexpensive means of analysis and have been proposed as sensitive biomarkers of cognitive impairment; besides, various ERP components are strongly linked with working memory, attention, sensory processing and motor responses. In this study, an auditory oddball task is employed, to acquire high density electroencephalograhy recordings from healthy elderly controls, MCI and AD patients. The mismatch negativity (MMN) and P300 ERP components are then extracted and their relationship with neurodegeneration is examined. Then, the neural activation at these components is reconstructed using the 3D vector field tomography (3D-VFT) inverse solution. The results reveal a decline of both ERPs amplitude, and a statistically significant prolongation of their latency as cognitive impairment advances. For the MMN, higher brain activation is usually localized in the inferior frontal and superior temporal gyri in the controls. However, in AD, parietal sites exhibit strong activity. Stronger P300 generators are mostly found in the frontal lobe for the controls, but in AD they often shift to the temporal lobe. Reduction in inferior frontal source strength and the switch of the maximum intensity area to parietal and superior temporal sites suggest that these areas, especially the former, are of particular significance when neurodegenerative disorders are investigated. The modulation of MMN and P300 can serve to produce biomarkers of dementia and its progression, and brain imaging can further contribute to the diagnostic efficiency of ERPs. (C) 2016 Published by Elsevier B.V.
机译:精确临床前检测痴呆有效治疗和阶段监测具有重要意义。已经提出了杂项的生物标志物,例如生物化学,遗传,神经影像学和生理学,以诊断阿尔茨海默病(AD),常见的嫌疑人背后的表现形式下降,以及轻微的认知障碍(MCI),在广告之前的神经病理学不影响认知功能。事件相关潜力(ERP)方法构成非侵入性,廉价的分析手段,并已被提出为认知障碍的敏感生物标志物;此外,各种ERP部件与工作记忆,关注,感官加工和电动机反应强烈连接。在这项研究中,采用了听觉奇怪的任务,以获得来自健康老年人对照,MCI和AD患者的高密度脑电图记录。然后提取不匹配的消极性(MMN)和P300ERP组分,并检查它们与神经变性的关系。然后,使用3D矢量场断层扫描(3D-VFT)逆解决方案重建这些组件的神经激活。结果揭示了ERPS幅度的下降,以及作为认知障碍进步的统计上显着的延迟。对于MMN,更高的脑激活通常在对照中的较差额头和优越的时间吉尔中局部。但是,在广告中,Paretartal网站表现出强烈的活动。更强大的P300发电机主要位于额叶的控制中,但在AD中,它们通常会转向时间叶。降低较差的前源强度和最大强度区域的开关到顶视和颞部位点表明,当研究神经退行性障碍时,这些区域,尤其是前者,特别是前者是特别重要的。 MMN和P300的调节可以用于产生痴呆的生物标志物及其进展,并且脑成像可以进一步有助于ERP的诊断效率。 (c)2016年由Elsevier B.V发布。

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