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Interaction between changes in local and temporospatial spectral EEG characteristics during exposure of humans to hypoxia

机译:人类缺氧期间局部和颞pat频谱脑电图特征变化之间的相互作用

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The temporospatial and local characteristics of the EEG were studied in healthy subjects during the respiration of a hypoxic oxygen-nitrogen gas mixture containing 8% oxygen. Analysis of the spectral power density, coherence, phase shift, similarity of dominant frequencies in the EEG in different leads was performed separately for epochs containing and not containing visually apparent patterns of EEG spatial synchronization. In addition, assessment of spectral measures took account of the fact of the dominance of the frequency being analyzed in the EEG spectrum of the corresponding lead. The results of these studies showed that overall, hypoxia was accompanied by a decrease in EEG coherence in the alpha range and, for connections in the left mid-temporal lead, the delta range. The beta range showed an increase in the values of this measure, while the theta range showed different changes in coherence: increases in epochs containing spatial synchronization patterns and decreases from control levels in other epochs. Hypoxia was also associated with increases in the EEG phase shift in the frontal and temporal leads (in relation to the EEG recordings in the other leads) in the delta and theta ranges. In the beta range, conversely, there was a decrease in the mean phase shift. Consideration of the fact of dominance of one or another frequency in the spectra of local EEG traces is needed for correct interpretation of analyses of temporospatial measures. A mathematical model of the interaction between processes at different frequencies is presented to explain some of the observations in the current work.
机译:在健康受试者的呼吸中,研究了含有8%氧气的低氧氧气-氮气混合物的EEG的颞pat和局部特征。对于包含和不包含视觉上明显的EEG空间同步模式的历元,分别进行了不同导线中EEG的频谱功率密度,相干性,相移,主频相似性分析。另外,频谱测量的评估考虑了相应导线的EEG频谱中所分析频率的优势。这些研究的结果表明,总体而言,缺氧伴随着α范围内EEG相干性的降低,而对于左中颞导联而言,δ范围也随之降低。 β范围显示该度量值的增加,而theta范围显示相干性的不同变化:包含空间同步模式的时期增加,而其他时期的控制水平则降低。缺氧还与额​​度和theta范围内额叶和颞部导线的EEG相移增加有关(相对于其他导线中的EEG记录)。相反,在beta范围内,平均相移减小。为了正确解释颞pat测量的分析,需要考虑一个或另一个频率在局部脑电图谱中占优势的事实。提出了不同频率下的过程之间相互作用的数学模型,以解释当前工作中的一些观察结果。

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