Single-Channel EMG Classification With Ensemble-Empirical-Mode-Decomposition-Based ICA for Diagnosing Neuromuscular Disorders

独立成分分析 希尔伯特-黄变换 线性判别分析 计算机科学 模式识别(心理学) 盲信号分离 固定点算法 人工智能 集合(抽象数据类型) 噪音(视频) 肌电图 信号(编程语言) 频道(广播) 信号处理 语音识别 物理医学与康复 计算机视觉 图像(数学) 滤波器(信号处理) 电信 医学 程序设计语言 雷达 计算机网络
作者
Ganesh R. Naik,Easter S. Suviseshamuthu,Hung T. Nguyen
出处
期刊:IEEE Transactions on Neural Systems and Rehabilitation Engineering [Institute of Electrical and Electronics Engineers]
卷期号:24 (7): 734-743 被引量:144
标识
DOI:10.1109/tnsre.2015.2454503
摘要

An accurate and computationally efficient quantitative analysis of electromyography (EMG) signals plays an inevitable role in the diagnosis of neuromuscular disorders, prosthesis, and several related applications. Since it is often the case that the measured signals are the mixtures of electric potentials that emanate from surrounding muscles (sources), many EMG signal processing approaches rely on linear source separation techniques such as the independent component analysis (ICA). Nevertheless, naive implementations of ICA algorithms do not comply with the task of extracting the underlying sources from a single-channel EMG measurement. In this respect, the present work focuses on a classification method for neuromuscular disorders that deals with the data recorded using a single-channel EMG sensor. The ensemble empirical mode decomposition algorithm decomposes the single-channel EMG signal into a set of noise-canceled intrinsic mode functions, which in turn are separated by the FastICA algorithm. A reduced set of five time domain features extracted from the separated components are classified using the linear discriminant analysis, and the classification results are fine-tuned with a majority voting scheme. The performance of the proposed method has been validated with a clinical EMG database, which reports a higher classification accuracy (98%). The outcome of this study encourages possible extension of this approach to real settings to assist the clinicians in making correct diagnosis of neuromuscular disorders.
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