Catrambone Vincenzo, Wendt Herwig, Barbieri Riccardo, Abry Patrice, Valenza Gaetano
Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:561-564. doi: 10.1109/EMBC44109.2020.9175859.
Quantification of brain-heart interplay (BHI) has mainly been performed in the time and frequency domains. However, such functional interactions are likely to involve nonlinear dynamics associated with the two systems. To this extent, in this preliminary study we investigate the functional coupling between multifractal properties of Electroencephalography (EEG) and Heart Rate Variability (HRV) series using a channel- and time scale-wise maximal information coefficient analysis. Experimental results were gathered from 24 healthy volunteers undergoing a resting state and a cold-pressure test, and suggest that significant changes between the two experimental conditions might be associated with nonlinear quantifiers of the multifractal spectrum. Particularly, major brain-heart functional coupling was associated with the secondorder cumulant of the multifractal spectrum. We conclude that a functional nonlinear relationship between brain- and heartbeat-related multifractal sprectra exist, with higher values associated with the resting state.
脑心相互作用(BHI)的量化主要是在时域和频域中进行的。然而,这种功能相互作用可能涉及与这两个系统相关的非线性动力学。在此程度上,在这项初步研究中,我们使用通道和时间尺度-wise最大信息系数分析来研究脑电图(EEG)和心率变异性(HRV)系列的多重分形特性之间的功能耦合。实验结果收集自24名接受静息状态和冷压试验的健康志愿者,结果表明两种实验条件之间的显著变化可能与多重分形谱的非线性量化指标有关。特别是,主要的脑心功能耦合与多重分形谱的二阶累积量有关。我们得出结论,脑电和心跳相关的多重分形谱之间存在功能非线性关系,较高的值与静息状态相关。