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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >ORDER PATTERNS RECURRENCE ANALYSIS OF ELECTROENCEPHALOGRAM DURING SEVOFLURANE ANESTHESIA
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ORDER PATTERNS RECURRENCE ANALYSIS OF ELECTROENCEPHALOGRAM DURING SEVOFLURANE ANESTHESIA

机译:七氟烷麻醉过程中电子体序图谱递归分析

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Characterizing the brain activity during anesthesia is considered a major challenge for researchers. The concentra- tion-relevant effect of the sevoflurane is evaluated on EEG signals collected from 19 patients during a proscribed induction and recovery setup. Recurrence Quantification Analysis based on order patterns is employed to provide an index named order laminarity (OLAM) to evaluate changes in the neuronal system. This index computes the activity of a part of brain without considering the number or dynamical nature of the individual sources and signifies segments staying in the same phase space region for a short time. Pharmacokinetic-pharmacodynamic modeling and statistical features are used to assess the effectiveness of the OLAM index compared with response entropy index as implemented in the commercial Datex-Ohmeda Module. Both methods track the overall changes in EEG. However, the OLAM can be proficiently computed and is artifact resistant (standard deviation of 0.016 for OLAM relative to 0.02 for response entropy index). This measure as a neurophysiologic correlation of general anesthesia also reacts quicker to alternations in EEG signals during induction and correlates more powerfully with drug concentration (The prediction probability of 0.89 for OLAM is proportionate to 0.83 for response entropy). This examination exemplifies a crucial translational phase from the neuroscience of consciousness to more intricate monitoring of anesthetic effects in patients.
机译:表征麻醉期间的大脑活动被认为是研究人员的主要挑战。在禁止的诱导和恢复设置期间,对从19名患者收集的脑电信号评估了七氟醚的浓度相关作用。基于顺序模式的递归量化分析被用于提供一个名为顺序分层(OLAM)的索引,以评估神经元系统的变化。该指数计算大脑一部分的活动,而无需考虑各个来源的数量或动力学性质,并表示在短时间内停留在同一相空间区域中的片段。与在商业Datex-Ohmeda模块中实现的响应熵指数相比,药代动力学-药效学建模和统计功能用于评估OLAM指数的有效性。两种方法都可以追踪脑电图的总体变化。但是,可以熟练地计算OLAM,并且可以抵抗伪像(OLAM的标准偏差为0.016,响应熵指数的标准偏差为0.02)。这种措施作为全身麻醉的神经生理学相关性,在诱导期间对EEG信号的变化反应也更快,并且与药物浓度相关性更强(OLAM的预测概率为0.89,反应熵的预测概率为0.83)。该检查例证了从意识神经科学到对患者麻醉效果的更复杂监控的关键转换阶段。

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