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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >A Study on the Possible Usefulness of Detrended Fluctuation Analysis of the Electroencephalogram Background Activity in Alzheimer''s Disease
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A Study on the Possible Usefulness of Detrended Fluctuation Analysis of the Electroencephalogram Background Activity in Alzheimer''s Disease

机译:阿尔茨海默氏病脑电图背景活动的去趋势波动分析的可能有用性研究

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We studied the EEG background activity of Alzheimer''''s disease (AD) patients with detrended fluctuation analysis (DFA). DFA provides an estimation of the scaling information and long-range correlations in time series. We recorded the EEG in 11 AD patients and 11 age-matched controls. Our results showed two scaling regions in all subjects'''' channels (for limited time scales from 0.01 to 0.04 s and from 0.08 to 0.43 s, respectively), with a clear bend when their corresponding slopes ($alpha_{1}$ and $alpha_{2}$) were different. No significant differences between groups were found with $alpha_{1}$. However, $alpha_{2}$ values were significantly lower in control subjects at electrodes T5, T6, and O1 ($p$ $≪$ 0.01, Student''''s $t$-test). These findings suggest that the scaling behavior of the EEG is sensitive to AD. Although $alpha_{2}$ values allowed us to separate AD patients and controls, accuracies were lower than with spectral analysis. However, a forward stepwise linear discriminant analysis with a leave-one-out cross-validation procedure showed that the combined use of DFA and spectral analysis could improve the diagnostic accuracy of each individual technique. Thus, although spectral analysis outperforms DFA, the combined use of both techniques may increase the insight into brain dysfunction in AD.
机译:我们通过去趋势波动分析(DFA)研究了阿尔茨海默氏病(AD)患者的脑电背景活动。 DFA提供了时间序列中缩放信息和远程相关性的估计。我们记录了11名AD患者和11名年龄匹配的对照组的脑电图。我们的结果显示,所有对象通道中都有两个缩放区域(分别在0.01到0.04 s和0.08到0.43 s的有限时间范围内),当它们的相应斜率($ alpha_ {1} $和$ alpha_ {2} $)是不同的。使用$ alpha_ {1} $发现组之间没有显着差异。但是,在电极T5,T6和O1的对照组中,$ alpha_ {2} $值明显较低($ p $ $≪ $ 0.01,Student's $ t $测试)。这些发现表明,EEG的缩放行为对AD敏感。尽管$ alpha_ {2} $值使我们能够区分AD患者和对照组,但其准确性低于频谱分析。但是,前瞻性逐步线性判别分析和留一法交叉验证程序表明,DFA和光谱分析的组合使用可以提高每种技术的诊断准确性。因此,尽管频谱分析的性能优于DFA,但两种技术的组合使用可能会增加对AD中脑功能障碍的了解。

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