Department of Radiology, AOU di Cagliari, s.s. 554 Monserrato, Cagliari, Italy.
Department of Radiology, AOU di Cagliari, s.s. 554 Monserrato, Cagliari, Italy.
Clin Neurophysiol. 2022 Nov;143:1-13. doi: 10.1016/j.clinph.2022.08.010. Epub 2022 Aug 28.
The present mini-review summarizes recent clinical findings related to the analysis of the aperiodic component of EEG (electroencephalographic) power spectra, making them quickly accessible to medical specialists and health researchers, with the aim of boosting related research.
Based on our experience about clinicians' literature-searching, we queried the PubMed database with terms related to EEG power spectra aperiodic component analysis and selected clinical studies that referenced such terms in the title/abstract, and were published in the last five years.
A total of 11 journal articles, dealing with 9 different neurologic and psychiatric conditions published between 1st January 2016 - April 1st 2021, were surveyed.
All the reviewed studies focused on exploring the pathophysiological significance of the aperiodic component and its correlation with disease presence, stage, and severity. Despite the heterogeneity of pathologies, it was possible to cluster most of them according to the mechanism underlying slope alterations, namely hypo-/hyper-excitability. It was also possible to identify some counterintuitive findings, probably related to compensation mechanisms of disease-specific neurophysiological alterations.
All the findings seem to support the role of the aperiodic activity as index of excitation/inhibition balance, with promising clinical applications that might challenge the traditional approach to pathologies diagnosis/treatment/follow-up.
本综述总结了最近与 EEG(脑电图)功率谱非周期性成分分析相关的临床发现,使医学专家和健康研究人员能够快速了解这些发现,旨在促进相关研究。
根据我们对临床医生文献检索的经验,我们使用与 EEG 功率谱非周期性成分分析相关的术语在 PubMed 数据库中进行查询,并选择了在标题/摘要中引用这些术语且在过去五年内发表的临床研究。
共调查了 11 篇期刊文章,涉及 2016 年 1 月 1 日至 2021 年 4 月 1 日期间 9 种不同的神经和精神疾病。
所有回顾的研究都集中在探索非周期性成分的病理生理意义及其与疾病存在、阶段和严重程度的相关性。尽管存在病理学异质性,但根据斜率变化的机制(即低/高兴奋性)可以将大多数病理学聚类。还可以确定一些违反直觉的发现,可能与特定神经生理变化的补偿机制有关。
所有这些发现似乎都支持非周期性活动作为兴奋/抑制平衡指标的作用,具有有前途的临床应用,可能挑战传统的疾病诊断/治疗/随访方法。