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A wavelet-based matlab suite for the analysis of EEG recordings.

机译:基于小波的matlab套件,用于脑电图记录分析。

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摘要

Introduction: Analyzing the electrical signals from the brain, electroencephalography (EEG), to examine the physiological and psychological well-being of an individual is common practice in psychophysiology. Often, this is accomplished by creating event-related potentials (ERPs) from multiple EEG recordings or by transforming the EEG recordings from the time domain to the frequency domain via Fourier transforms, typically using software for either method. Both methods reveal useful information that is typically inaccessible in the original recording. However, inherent deficiencies with both methods and the software used to execute them do exist. Many software programs obscure the routines by which the ERPs and Fourier transforms are generated. This lack of transparency complicates troubleshooting and innovation. In addition, exotic or novel methods of analyzing EEGs, such as the wavelet transforms, are not included in most software. In terms of the methods themselves, ERPs are by necessity a construct of many EEG recordings. In the instances in which few EEG recordings exist, an ERP is less effective as an analysis tool. The Fourier transform destroys potentially useful time information present in the original EEG recording. To rectify these shortcomings, an open Matlab program suite was devised using wavelet transform methods. Three sets of data were analyzed using the suite in order to determine usefulness and efficacy.;Methods: Three separate sets of data were obtained. Each set of data contained multiple groups exhibiting various psychological or physiological disorders (PTSD, Parkinson's disease, ADHD, etc.). The members of the groups participated in tasks designed to evoke a particular type of psychophysiological response. All tasks were carried out while the participants' EEGs were recorded using a 128 channel EGI system. The resulting recordings were exported, and a custom Matlab program suite based on wavelet methods was used to analyze the recordings. Implementation of the code for the test cases was the primary focus, but the results were also interpreted using statistical methods and compared to current literature to attempt to place them within a known framework.;Results: The Matlab program suite was successfully implemented for all test cases. Each data set was successfully converted to a format compatible with the program suite, and the wavelet methods successfully generated data for all sets. In addition, statistical analysis revealed many interesting significant differences between groups within each data set. Nearly all results could be explained using current publications and theories in a meaningful way.;Conclusions: A program suite based on Matlab and using wavelet-based methods was successfully created and implemented in multiple data sets of psychophysiological data consisting of EEG recordings. The program suite generated data in an alternative approach to that of traditional analysis techniques. These results were also useful in determining differences in brain function between various psychological and physiological disorders in certain psychophysiological tasks. This suggests that such a solution to the intrinsic problems with current EEG analysis techniques may be viable.
机译:简介:分析大脑的电信号,脑电图(EEG),以检查个人的生理和心理健康状况是心理生理学的普遍做法。通常,这是通过从多个EEG记录创建事件相关电位(ERP)或通过傅立叶变换将EEG记录从时域转换到频域来完成的,通常使用两种方法的软件。两种方法都揭示了原始记录中通常无法访问的有用信息。但是,这两种方法以及用于执行它们的软件都存在固有的缺陷。许多软件程序掩盖了生成ERP和Fourier转换的例程。这种透明性的缺乏使故障排除和创新变得复杂。此外,大多数软件不包括分析脑电图的奇异或新颖方法,例如小波变换。就方法本身而言,ERP必然是许多EEG记录的构造。在几乎没有脑电图记录的情况下,ERP作为分析工具的效率较低。傅立叶变换破坏了原始EEG记录中可能存在的有用时间信息。为了纠正这些缺点,使用小波变换方法设计了一个开放的Matlab程序套件。使用该套件分析了三组数据,以确定其有用性和有效性。方法:获得三组独立的数据。每组数据都包含表现出各种心理或生理疾病(PTSD,帕金森氏病,ADHD等)的多个组。小组成员参加了旨在引起特定类型的心理生理反应的任务。所有任务均在使用128通道EGI系统记录参与者的脑电图的同时执行。将生成的记录导出,并使用基于小波方法的自定义Matlab程序套件来分析记录。测试用例代码的实现是主要重点,但是结果也使用统计方法进行解释,并与当前文献进行比较,以尝试将它们放置在已知框架中。结果:Matlab程序套件已成功实现了所有测试案件。每个数据集已成功转换为与程序套件兼容的格式,并且小波方法成功生成了所有数据集的数据。此外,统计分析还揭示了每个数据集中各组之间的许多有趣的显着差异。结论:结论:一个成功的基于Matlab并使用基于小波的方法的程序套件已成功创建并在由EEG录音组成的心理生理数据的多个数据集中实现。该程序套件以一种替代传统分析技术的方法来生成数据。这些结果对于确定某些心理生理任务中各种心理和生理疾病之间的脑功能差异也很有用。这表明用当前的EEG分析技术解决内在问题的解决方案可能是可行的。

著录项

  • 作者

    Clemans, Zachary Adam.;

  • 作者单位

    University of Louisville.;

  • 授予单位 University of Louisville.;
  • 学科 Engineering Biomedical.
  • 学位 M.Eng.
  • 年度 2013
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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