Terry John R, Anderson Clare, Horne James A
Department of Mathematical Sciences, Loughborough University, Leicestershire, United Kingdom.
Hum Brain Mapp. 2004 Oct;23(2):73-84. doi: 10.1002/hbm.20052.
The spatial organization of nonlinear interactions between different brain regions during the first NREM sleep stage is investigated. This is achieved via consideration of four bipolar electrode derivations, Fp1F3, Fp2F4, O1P3, O2P4, which are used to compare anterior and posterior interhemispheric interactions and left and right intrahemispheric interactions. Nonlinear interdependence is detected via application of a previously written algorithm, along with appropriately generated surrogate data sets. It is now well understood that the output of neural systems does not scale linearly with inputs received and, thus, the study of nonlinear interactions in EEG is crucial. This approach also offers significant advantages over standard linear techniques, in that the strength, direction, and topography of the interdependencies can all be calculated and considered. Previous research has linked delta activity during the first NREM sleep stage to performance on frontally activating tasks during waking hours. We demonstrate that nonlinear mechanisms are the driving force behind this delta activity. Furthermore, evidence is presented to suggest that the aging brain calls upon the right parietal region to assist the pre-frontal cortex. This is highlighted by statistically significant differences in the rates of interdependencies between the left pre-frontal cortex and the right parietal region when comparing younger subjects (<23 years) with older subjects (>60 years). This assistance has been observed in brain-imaging studies of sleep-deprived young adults, suggesting that similar mechanisms may play a role in the event of healthy aging. Additionally, the contribution to the delta rhythm via nonlinear mechanisms is observed to be greater in older subjects.
研究了在第一个非快速眼动睡眠阶段不同脑区之间非线性相互作用的空间组织。这是通过考虑四个双极电极导联Fp1F3、Fp2F4、O1P3、O2P4来实现的,这些导联用于比较半球间前后相互作用以及半球内左右相互作用。通过应用先前编写的算法以及适当生成的替代数据集来检测非线性相互依存关系。现在人们已经清楚地认识到,神经系统的输出并不随所接收的输入呈线性缩放,因此,脑电图中非线性相互作用的研究至关重要。这种方法相对于标准线性技术也具有显著优势,因为可以计算和考虑相互依存关系的强度、方向和地形。先前的研究已将第一个非快速眼动睡眠阶段的δ活动与清醒时额叶激活任务的表现联系起来。我们证明非线性机制是这种δ活动背后的驱动力。此外,有证据表明衰老的大脑会调用右侧顶叶区域来协助前额叶皮层。当比较年轻受试者(<23岁)和年长受试者(>60岁)时,左侧前额叶皮层和右侧顶叶区域之间相互依存率的统计学显著差异突出了这一点。在睡眠不足的年轻成年人的脑成像研究中观察到了这种协助,这表明类似的机制可能在健康衰老过程中发挥作用。此外,观察到年长受试者通过非线性机制对δ节律的贡献更大。