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Autism Spectrum Disorder Diagnostic System Using HOS Bispectrum with EEG Signals

机译:使用HOS双谱和EEG信号的自闭症谱系诊断系统

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摘要

Autistic individuals often have difficulties expressing or controlling emotions and have poor eye contact, among other symptoms. The prevalence of autism is increasing globally, posing a need to address this concern. Current diagnostic systems have particular limitations; hence, some individuals go undiagnosed or the diagnosis is delayed. In this study, an effective autism diagnostic system using electroencephalogram (EEG) signals, which are generated from electrical activity in the brain, was developed and characterized. The pre-processed signals were converted to two-dimensional images using the higher-order spectra (HOS) bispectrum. Nonlinear features were extracted thereafter, and then reduced using locality sensitivity discriminant analysis (LSDA). Significant features were selected from the condensed feature set using Student’s -test, and were then input to different classifiers. The probabilistic neural network (PNN) classifier achieved the highest accuracy of 98.70% with just five features. Ten-fold cross-validation was employed to evaluate the performance of the classifier. It was shown that the developed system can be useful as a decision support tool to assist healthcare professionals in diagnosing autism.
机译:自闭症患者通常难以表达或控制情绪,并且眼神交流不佳,还有其他症状。全球自闭症的患病率正在上升,这就需要解决这一问题。当前的诊断系统具有特定的局限性。因此,有些人得不到诊断或诊断延迟。在这项研究中,使用脑电图(EEG)信号开发了一种有效的自闭症诊断系统,该信号是由大脑中的电活动产生的。使用高阶光谱(HOS)双谱将预处理后的信号转换为二维图像。此后提取非线性特征,然后使用局部灵敏度判别分析(LSDA)进行减少。使用Student -test从浓缩功能集中选择了重要功能,然后将其输入到不同的分类器中。概率神经网络(PNN)分类器仅具有五个功能即可达到98.70%的最高准确度。十倍交叉验证用于评估分类器的性能。结果表明,开发的系统可以用作决策支持工具,以帮助医疗保健专业人员诊断自闭症。

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