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优化用于脑电图轻度认知障碍检测的电极配置。

Optimizing electrode configurations for EEG mild cognitive impairment detection.

作者信息

Jiang Yi, Zhang Xin, Guo Zhiwei, Zhou Xiaobo, He Jiayuan, Jiang Ning

机构信息

The National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, Chengdu, 610041, Sichuan, China.

The Med-X Center for Manufacturing, Sichuan University, Chengdu, 610041, Sichuan, China.

出版信息

Sci Rep. 2025 Jan 2;15(1):578. doi: 10.1038/s41598-024-84277-4.

Abstract

The Optimal electrode configuration of Electroencephalograms (EEG) systems for mild cognitive impairment (MCI) detection and monitoring in non-clinical settings, i.e. number of electrodes and the positions of the electrodes, remains to be explored. In the current study, we explored the optimization of electrode configuration for MCI detection. We used a 32-channel EEG device to record the data of 21 MCI patients and 20 cognitively normal elderly (NC) undergoing working memory (WM) tasks. Based on the differential value (MCI group vs. NC group) from the Power Spectral Density (PSD) value of each electrode in θ and α frequency band during WM coding stage, six different electrode configurations were obtained: (1) four electrodes in the occipital lobe (OCL4); (2) three electrodes in the prefrontal lobe (PRL3); (3) four electrodes in the parietal lobe (PLL4), (4) eight electrodes in occipital combined parietal lobe (OPL8), (5) seven electrodes in occipital combined prefrontal lobe (OPL7); and (6) seven electrodes in parietal combined prefrontal lobe (PPL7). A multi-parameter combination-assisted binary logistic regression model was established to distinguish two groups. Receiver operating characteristic (ROC) curves were used to evaluate the MCI diagnostic power of each electrode configuration. The area under curve (AUC) of the ROC of electrode configurations OCL4, PRL3, PLL4, OPL8, OPL7 and PPL7 were 0.765, 0.683, 0.729, 0.83, 0.788, and 0.769, respectively. And the sensitivity of six electrode configurations were 0.962, 0.794, 0.873, 0.943, 0.859, and 0.938, respectively. Among these six configurations, OCL4, i.e. PO3, PO4, PO8, and PO7, had the highest sensitivity 96.2%, which meant that relying solely on these four electrodes of the occipital lobe had the potential to serve as an objective tool for preliminary screening of MCI. The abnormal brain rhythm characteristics of the frontal, parietal, and occipital lobes in the memory encoding stage of MCI provide a new perspective for MCI-WM impairment, which has the potential to be a novel biomarker for the early detection of pathological age-related cognitive decline. Further, a potential four-electrode configuration may be used for a novel detecting and monitoring EEG system of MCI in non-clinical settings.

摘要

用于在非临床环境中检测和监测轻度认知障碍(MCI)的脑电图(EEG)系统的最佳电极配置,即电极数量和电极位置,仍有待探索。在本研究中,我们探索了用于MCI检测的电极配置优化。我们使用32通道EEG设备记录了21名MCI患者和20名认知正常的老年人(NC)在执行工作记忆(WM)任务时的数据。基于WM编码阶段每个电极在θ和α频段的功率谱密度(PSD)值的差值(MCI组与NC组),获得了六种不同的电极配置:(1)枕叶四个电极(OCL4);(2)前额叶三个电极(PRL3);(3)顶叶四个电极(PLL4);(4)枕叶联合顶叶八个电极(OPL8);(5)枕叶联合前额叶七个电极(OPL7);以及(6)顶叶联合前额叶七个电极(PPL7)。建立了多参数组合辅助二元逻辑回归模型来区分两组。使用受试者工作特征(ROC)曲线来评估每种电极配置的MCI诊断能力。电极配置OCL4、PRL3、PLL4、OPL8、OPL7和PPL7的ROC曲线下面积(AUC)分别为0.765、0.683、0.729、0.83、0.788和0.769。六种电极配置的灵敏度分别为0.962、0.794、0.873、0.943、0.859和0.938。在这六种配置中,OCL4,即PO3、PO4、PO8和PO7,具有最高的灵敏度96.2%,这意味着仅依靠枕叶的这四个电极有可能作为MCI初步筛查的客观工具。MCI记忆编码阶段额叶、顶叶和枕叶的异常脑节律特征为MCI-WM损伤提供了新的视角,有可能成为早期检测与年龄相关的病理性认知衰退的新型生物标志物。此外,一种潜在的四电极配置可用于非临床环境中新型的MCI检测和监测EEG系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef44/11696624/f30a5872aa18/41598_2024_84277_Fig1_HTML.jpg

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