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A comparative study of the output correlations between wavelet transform, neural and neuro fuzzy networks and BIS index for depth of anesthesia

机译:小波变换,神经和神经模糊网络与BIS指标对麻醉深度的对比研究

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Anesthesia is a vital and important part of any surgical practice and allows doctors to operate safely and painlessly on a patients. The wide variety of available anesthetics allows anesthesiologists to select the most suitable type of anesthesia and anesthetic drug for a patient. Providing balanced anesthesia by testing the depth of anesthesia (DOA) is a way to know sudden awareness or increasing level of anesthesia during a surgery. In this paper, we present several methods to analyze the results of our experiments performed on 33 patients under coronary vessel surgery. In the first method, by applying the wavelet transform on EEG signal, a new index (namely WAI) is obtained, which shows the conscious level of the patient. In the second method, 10 features related to EEG signal during 10 second windows, such as, edge frequency, and beta ratio, are extracted and used by neural and neuro-fuzzy networks as inputs. Then, the value of DOA is calculated for each of the used algorithms. The correlation value of these methods, which is a criterion of the accuracy, is shown by the BIS monitor output. Simulation results show that the highest amount of correlation is achieved using neural networks with respect to BIS index.
机译:麻醉是任何手术实践的重要性和重要的一部分,并允许医生在患者身上安全,无痛。各种各样的可用麻醉剂允许麻醉学家为患者选择最合适的麻醉和麻醉药物。通过测试麻醉深度(DOA)提供平衡的麻醉是一种了解手术期间突然意识或增加麻醉水平的方式。在本文中,我们提出了几种方法来分析我们在冠状动脉手术下的33例患者进行的实验结果。在第一种方法中,通过在EEG信号上施加小波变换,获得了新的索引(即WAI),其显示了患者的有意识。在第二种方法中,由10秒窗口(例如边缘频率和BETA比)提取和使用与EEG信号相关的10个特征,并由神经和神经模糊网络作为输入。然后,为每个二手算法计算DOA的值。这些方法的相关值是BIS监视器输出所示的准确性的标准。仿真结果表明,使用关于BIS指数的神经网络实现了最高的相关性。

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