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Prediction of Nociceptive Responses during Sedation by Linear and Non-Linear Measures of EEG Signals in High Frequencies

机译:通过高频EEG信号的线性和非线性测量预测镇静过程中的伤害感受

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摘要

The level of sedation in patients undergoing medical procedures evolves continuously, affected by the interaction between the effect of the anesthetic and analgesic agents and the pain stimuli. The monitors of depth of anesthesia, based on the analysis of the electroencephalogram (EEG), have been progressively introduced into the daily practice to provide additional information about the state of the patient. However, the quantification of analgesia still remains an open problem. The purpose of this work is to improve the prediction of nociceptive responses with linear and non-linear measures calculated from EEG signal filtered in frequency bands higher than the traditional bands. Power spectral density and auto-mutual information function was applied in order to predict the presence or absence of the nociceptive responses to different stimuli during sedation in endoscopy procedure. The proposed measures exhibit better performances than the bispectral index (BIS). Values of prediction probability of Pk above 0.75 and percentages of sensitivity and specificity above 70% were achieved combining EEG measures from the traditional frequency bands and higher frequency bands.
机译:受麻醉和镇痛药作用与疼痛刺激之间相互作用的影响,正在接受医疗程序的患者中的镇静水平不断变化。基于脑电图(EEG)的分析,麻醉深度监控器已逐步引入到日常操作中,以提供有关患者状态的其他信息。但是,镇痛的量化仍然是一个未解决的问题。这项工作的目的是通过线性和非线性测量来改进对伤害性反应的预测,该线性和非线性测量是根据在高于传统频带的频带中过滤的EEG信号计算得出的。应用功率谱密度和自动互信息功能来预测内窥镜检查镇静过程中对不同刺激的伤害感受反应的存在与否。所提出的措施表现出比双光谱指数(BIS)更好的性能。结合传统频段和更高频段的脑电图测量方法,可以得出Pk的预测概率值大于0.75,敏感性和特异性百分比大于70%。

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