首页> 外文会议>2014 8th Conference of the European Study Group on Cardiovascular Oscillations >Prediction of response to noxious stimulation during sedation-analgesia by refined multiscale entropy analysis of EEG
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Prediction of response to noxious stimulation during sedation-analgesia by refined multiscale entropy analysis of EEG

机译:通过精细的脑电图多尺度熵分析预测镇痛镇痛过程中对有害刺激的反应

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摘要

The level of sedation in patients undergoing medical procedures evolves continuously since the effect of the anesthetic and analgesic agents is counteracted by noxious 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 was to analyze the capability of prediction of nociceptive responses based on refined multiscale entropy (RMSE). Functions based on RMSE and CeRemi permitted to predict different stimulation responses during sedation with better prediction probability than bispectral index.
机译:由于麻醉剂和镇痛剂的作用被有毒的刺激作用抵消,因此在接受医疗程序治疗的患者中,镇静水平不断提高。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。这项工作的目的是分析基于改进的多尺度熵(RMSE)的伤害感受预测的能力。基于RMSE和CeRemi的功能可以在镇静期间预测比双谱指数更好的预测刺激反应。

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