Electroencephalographic hallmarks of Alzheimer’s disease

IF 2.5 3区 心理学 Q3 NEUROSCIENCES
Florinda Ferreri , Francesca Miraglia , Fabrizio Vecchio , Nicoletta Manzo , Maria Cotelli , Elda Judica , Paolo Maria Rossini
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引用次数: 2

Abstract

In the human brain, physiological aging is characterized by progressive neuronal loss, leading to disruption of synapses and to a degree of failure in neurotransmission and information flow. However, there is increasing evidence to support the notion that the aged brain has a remarkable level of resilience (i.s. ability to reorganize itself), with the aim of preserving its physiological activity. It is therefore of paramount interest to develop objective markers able to characterize the biological processes underlying brain aging in the intact human, and to distinguish them from brain degeneration associated to age-related neurological progressive diseases like Alzheimer's disease. EEG, alone and combined with transcranial magnetic stimulation (TMS-EEG), is particularly suited to this aim, due to the functional nature of the information provided, and thanks to the ease with which it can be integrated in ecological scenarios including behavioral tasks. In this review, we aimed to provide the reader with updated information about the role of modern methods of EEG and TMS-EEG analysis in the investigation of physiological brain aging and Alzheimer's disease. In particular, we focused on data about cortical connectivity obtained by using readouts such graph theory network brain organization and architecture, and transcranial evoked potentials (TEPs) during TMS-EEG. Overall, findings in the literature support an important potential contribution of such neurophysiological techniques to the understanding of the mechanisms underlying normal brain aging and the early (prodromal/pre-symptomatic) stages of dementia.

阿尔茨海默病的脑电图特征
在人脑中,生理性衰老的特征是神经元的逐渐丧失,导致突触的破坏和神经传递和信息流的一定程度的失败。然而,越来越多的证据支持这样一种观点,即老年人的大脑具有显著的恢复能力(即自我重组的能力),目的是保持其生理活动。因此,开发能够表征完整人类大脑衰老背后的生物学过程的客观标记,并将其与与年龄相关的神经进行性疾病(如阿尔茨海默病)相关的脑变性区分开来,是至关重要的。脑电图,单独和结合经颅磁刺激(TMS-EEG),特别适合于这一目标,由于所提供的信息的功能性质,并且由于它可以轻松地集成在包括行为任务在内的生态场景中。在这篇综述中,我们旨在为读者提供有关脑电图和TMS-EEG分析的现代方法在研究生理性脑老化和阿尔茨海默病中的作用的最新信息。我们特别关注通过使用图论、网络大脑组织和结构以及TMS-EEG期间的经颅诱发电位(TEPs)等读数获得的皮质连通性数据。总的来说,文献中的发现支持这种神经生理学技术对理解正常大脑衰老和痴呆早期(前驱/症状前)阶段的机制的重要潜在贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.40
自引率
10.00%
发文量
177
审稿时长
3-8 weeks
期刊介绍: The International Journal of Psychophysiology is the official journal of the International Organization of Psychophysiology, and provides a respected forum for the publication of high quality original contributions on all aspects of psychophysiology. The journal is interdisciplinary and aims to integrate the neurosciences and behavioral sciences. Empirical, theoretical, and review articles are encouraged in the following areas: • Cerebral psychophysiology: including functional brain mapping and neuroimaging with Event-Related Potentials (ERPs), Positron Emission Tomography (PET), Functional Magnetic Resonance Imaging (fMRI) and Electroencephalographic studies. • Autonomic functions: including bilateral electrodermal activity, pupillometry and blood volume changes. • Cardiovascular Psychophysiology:including studies of blood pressure, cardiac functioning and respiration. • Somatic psychophysiology: including muscle activity, eye movements and eye blinks.
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