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Surrogate data modeling the relationship between high frequency amplitudes and Higuchi fractal dimension of EEG signals in anesthetized rats

机译:代理数据建模麻醉大鼠高频幅度与脑电坡脑电图信号分数尺寸的关系

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摘要

We used spectral analysis and Higuchi fractal dimension (FD) to correlate the EEG spectral characteristics of the sensorimotor cortex, hippocampus, and pons with their corresponding EEG signal complexities in anesthetized rats. We have explored the quantitative relationship between the mean FDs and EEG wide range high frequency (8-50 Hz) activity during ketamine/xylazine versus nembutal anesthesia at surgical plane. Using FD we detected distinct inter-structure complexity pattern and uncovered for the first time that the polygraphically and behaviorally defined anesthetized state at surgical plane as equal during experiment in two anesthetic regimens, is not the same with respect to the degree of neuronal activity (degree of generalized neuronal inhibition achieved) at different brain levels. Using the correlation of certain brain structure EEG spectral characteristics with their corresponding FDs, and the surrogate data modeling, we determined what particular frequency band contributes to EEG complexities in ketamine/xylazine versus nembutal anesthesia. In this study we have shown that the quantitative relationship between higher frequency EEG amplitude and EEG complexity is the best-modeled by surrogate data as a 3rd order polynomial. On the base of our EEG amplitude/EEG complexity relationship model, and the evidenced spectral differences in ketamine versus nembutal anesthesia we have proved that higher amplitudes of sigma, beta, and gamma frequency in ketamine anesthesia yields to higher FDs.
机译:我们使用光谱分析和HIGUCHI分形尺寸(FD)来将SensorImotor皮层,海马和PON的EEG光谱特性与它们在麻醉大鼠中相应的EEG信号复杂性相关联。我们探讨了在氯胺酮/木嗪期间的平均Fds和脑电图宽范围高频(8-50 Hz)活性之间的定量关系与手术平面上的Nembutal麻醉。使用FD我们检测到不同的结构间复杂性图案,并且首次发现在两个麻醉方案中的实验期间的手术平面中的多射图和行为程度定义的麻醉状态,与神经元活动程度不同(学位在不同脑水平下达到的广义神经元抑制。使用某些大脑结构EEG光谱特性与其相应的FDS和替代数据建模的相关性,我们确定了特定的频段有助于氯胺酮/甲嗪的EEG复杂性与Nembutal麻醉。在本研究中,我们已经表明,较高频率EEG幅度和EEG复杂性之间的定量关系是由代理数据作为第三阶多项式的最佳建模。在我们的EEG幅度/ EEG复杂性关系模型的基础上,并证明了氯胺酮与nemutal麻醉的磷酸型光谱差异,我们证明了氯胺酮麻醉中σ,β和γ频率较高的巨大幅度率为较高的Fds。

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