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Analyses of EEG background activity in Autism disorders with fast Fourier transform and short time Fourier measure

机译:快速傅里叶变换的自闭症障碍脑电图背景活动及短时间傅立叶测量分析

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Electroencephalography (EEG) is widely used in clinical settings to investigate neurophysiology. Since EEG signals contain a wealth of information about brain functions, there are many approaches in analyzing EEG signals with spectral techniques. In this study we have investigated the EEG background activity in Autism disorder using a number of frequency analysis techniques. We have used fast Fourier transform (FFT), short time Fourier transform (STFT) and STFT at bandwidth of total spectrum (we named its STFT-BW) for 19 channel is of EEG. Coefficients of the EEG in 10 Autism disorders and 7 age matched control subjects were measured. These coefficients were assessed with variance analysis. We find no significant different between Autism disorders and control subjects EEGs with STFT. On the other hand, Autism disorders had significantly difference FFT value (p<0.01) at electrodes FP1 and F3. STFT at bandwidth (STFT-BW) had excellent different. FP1, F3 and T5 with (p<0.01) and F7, T3 and O1 with (p<0.05) had significantly differences. In addition our findings suggested that STFT-BW have 82.4% discriminate between normal and Autism subjects with mahalanobis distance but FFT and STFT haven't results significant.
机译:脑电图(EEG)广泛用于临床环境中以研究神经生理学。由于EEG信号包含有关大脑功能的丰富信息,因此通过光谱技术分析EEG信号有许多方法。在这项研究中,我们使用许多频率分析技术研究了自闭症中的脑电图背景活动。我们使用了快速的傅里叶变换(FFT),短时间傅里叶变换(STFT)和STFT在总光谱(我们命名为其STFT-BW)的带宽,19频道是脑电图。测量了10例自闭症疾病和7次匹配对照受试者的脑电图的系数。通过方差分析评估这些系数。我们发现自闭症紊乱和控制主题eegs与stft之间没有显着差异。另一方面,自闭症紊乱在电极FP1和F3处具有显着的FFT值(P <0.01)。 STFT在带宽(Stft-BW)的优异不同。 FP1,F3和T5具有(P <0.01)和F7,T3和O1(P <0.05)具有显着差异。此外,我们的研究结果表明,STFT-BW的歧视与Mahalanobis距离之间的正常和自闭症受试者有82.4%,但FFT和STFT没有结果。

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