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源自高密度脑电图的癌症相关疲劳的神经生理标志物。

Neurophysiological Markers of Cancer-Related Fatigue Derived from High-Density EEG.

作者信息

Handiru Vikram Shenoy, Suviseshamuthu Easter S, Su Haiyan, Yue Guang H

机构信息

Center for Mobility and Rehabilitation Engineering Research, Kessler Foundation, West Orange, 07052, NJ, USA.

Department of Physical Medicine and Rehabilitation, Rutgers New Jersey Medical School, Newark, 07107, NJ, USA.

出版信息

bioRxiv. 2025 May 1:2025.04.29.651322. doi: 10.1101/2025.04.29.651322.

Abstract

Cancer-related fatigue (CRF) significantly diminishes the quality of life of cancer survivors; however, objective diagnostic markers and the underlying neurophysiological mechanisms remain unclear. This study aimed to identify noninvasive EEG-based biomarkers of CRF by examining cortical activity and functional connectivity. We recorded resting-state and task-related [repetitive submaximal elbow flexions (EFs) until self-perceived exhaustion] high-density electroencephalography (EEG) from 10 cancer survivors with CRF and 14 healthy controls (HC). In our analysis, task-induced fatigue was categorized as mild, moderate, and severe, corresponding to the level of fatigue perceived at the beginning, middle, and end of the task period. Our study revealed the following significant findings: (1) Linear mixed-effects modeling of event-related desynchronization (ERD) EEG analysis during the EF task demonstrated significant effects of group and fatigue levels in the alpha band (8-12 Hz). (2) EF task-specific functional connectivity was estimated using the debiased weighted phase-lag index (dwPLI), which demonstrated reduced inter-regional connectivity in the M1 and prefrontal regions in the CRF group compared with the HC group. (3) The dwPLI analysis identified significantly reduced alpha-band connectivity strength in the CRF group, particularly between the right supramarginal gyrus and other brain regions during mild fatigue. (4) Additionally, resting-state EEG exhibited globally elevated delta-band (1-4 Hz) activity in CRF survivors than HC, potentially reflecting chronic fatigue. These observations emphasize the clinical relevance of resting-state EEG, motor activity-related ERD and functional brain connectivity as potential CRF biomarkers. Future research should validate these findings in larger cohorts and provide insights into more objective CRF diagnosis and the development of personalized interventions for alleviating CRF.

摘要

癌症相关疲劳(CRF)显著降低了癌症幸存者的生活质量;然而,客观诊断标志物和潜在的神经生理机制仍不清楚。本研究旨在通过检查皮层活动和功能连接来识别基于脑电图(EEG)的CRF无创生物标志物。我们记录了10名患有CRF的癌症幸存者和14名健康对照者(HC)的静息态和任务相关[重复性次最大肘部屈曲(EFs)直至自我感觉疲劳]高密度脑电图(EEG)。在我们的分析中,任务诱导的疲劳被分为轻度、中度和重度,分别对应于任务期开始、中间和结束时感知到的疲劳程度。我们的研究得出了以下重要发现:(1)在EF任务期间,事件相关去同步化(ERD)EEG分析的线性混合效应模型显示,α波段(8-12Hz)的组间和疲劳水平有显著影响。(2)使用去偏加权相位滞后指数(dwPLI)估计EF任务特异性功能连接,结果显示与HC组相比,CRF组M1和前额叶区域的区域间连接减少。(3)dwPLI分析发现CRF组的α波段连接强度显著降低,尤其是在轻度疲劳期间右侧缘上回与其他脑区之间。(4)此外,与HC相比,CRF幸存者的静息态EEG显示出全局δ波段(1-4Hz)活动升高,这可能反映了慢性疲劳。这些观察结果强调了静息态EEG、运动活动相关ERD和功能性脑连接作为潜在CRF生物标志物的临床相关性。未来的研究应在更大的队列中验证这些发现,并为更客观的CRF诊断以及开发缓解CRF的个性化干预措施提供见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c06/12247984/6adb68321314/nihpp-2025.04.29.651322v1-f0001.jpg

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