arXiv:2411.19922cs.LGcs.AI2024-11被引 16

通过动态脑连接分析,揭示认知状态与脑网络活动的关系。

Dynamic EEG-fMRI mapping: Revealing the relationship between brain connectivity and cognitive state

  • 结合静态与动态方法,用滑动窗口追踪脑功能连接变化。
  • 发现感知系统与默认模式网络在30-60秒内存在显著模块化连接。
  • 适合研究认知神经机制或临床脑功能评估的学者参考。

本研究探究了脑电图(EEG)与功能性磁共振成像(fMRI)之间的动态连接模式,深化了对脑网络交互的理解。通过整合静态与动态分析方法,我们识别出不同的脑连接状态,并描述其时间波动特征。结果表明,内在连接网络(ICNs)具有模块化组织结构,凸显了感觉系统与默认模式网络的重要作用。采用滑动窗口技术揭示了功能连接随时间的动态变化,进一步说明脑连接具有瞬时特性。此外,研究发现认知状态可通过短时数据(30-60秒)有效识别,且连接强度与不同视觉状态下的认知过程密切相关。该方法不仅增进了对EEG-fMRI信号相互作用的认识,也为未来脑动力学及认知功能神经相关性的研究奠定基础。后续研究应聚焦方法优化及其在多种认知与临床场景中的应用。

原文摘要 · Abstract (English)

This study investigated the dynamic connectivity patterns between EEG and fMRI modalities, contributing to our understanding of brain network interactions. By employing a comprehensive approach that integrated static and dynamic analyses of EEG-fMRI data, we were able to uncover distinct connectivity states and characterize their temporal fluctuations. The results revealed modular organization within the intrinsic connectivity networks (ICNs) of the brain, highlighting the significant roles of sensory systems and the default mode network. The use of a sliding window technique allowed us to assess how functional connectivity varies over time, further elucidating the transient nature of brain connectivity. Additionally, our findings align with previous literature, reinforcing the notion that cognitive states can be effectively identified through short-duration data, specifically within the 30-60 second timeframe. The established relationships between connectivity strength and cognitive processes, particularly during different visual states, underscore the relevance of our approach for future research into brain dynamics. Overall, this study not only enhances our understanding of the interplay between EEG and fMRI signals but also paves the way for further exploration into the neural correlates of cognitive functions and their implications in clinical settings. Future research should focus on refining these methodologies and exploring their applications in various cognitive and clinical contexts.

脑连接EEG-fMRI认知状态动态分析

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