DocumentCode :
3067395
Title :
Chaotic classification of electromyographic (EMG) signals via correlation dimension measurement
Author :
Bodruzzaman, M. ; Devgan, S. ; Kari, S.
Author_Institution :
Dept. of Electr. Eng., Tennessee State Univ., Nashville, TN, USA
fYear :
1992
fDate :
12-15 Apr 1992
Firstpage :
95
Abstract :
A set of intramuscular electromyographic signals were collected from various patient groups during ramp muscle contraction. The signals were collected using a real-time data acquisition system. The signals were tested for their chaotic behavior using spectral analysis and Poincare map techniques. MATLAB based software tools were developed to compute and plot the correlation function for each data set to determine the time lag for the first zero crossing. This time lag was used to create the signals state-space model. A two-dimensional state-space was created and plotted one state versus the other to observe the Poincare map. A correlation integral was computed for each state-space data set, and the correlation dimension values were then calculated by differentiating these correlation integral signals for each data set. The correlation dimension values were found to be different for different patient groups. The results show promise for online classification of neuromuscular patient groups
Keywords :
bioelectric potentials; chaos; medical signal processing; muscle; spectral analysis; EMG signals classification; MATLAB based software tools; Poincare map techniques; chaotic behavior; chaotic classification; correlation dimension measurement; correlation integral signals; intramuscular electromyographic signals; neuromuscular patient groups; ramp muscle contraction; real-time data acquisition system; spectral analysis; state-space data set; time lag; zero crossing; Chaos; Data acquisition; Electromyography; MATLAB; Mathematical model; Muscles; Real time systems; Software tools; Spectral analysis; Testing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Southeastcon '92, Proceedings., IEEE
Conference_Location :
Birmingham, AL
Print_ISBN :
0-7803-0494-2
Type :
conf
DOI :
10.1109/SECON.1992.202316
Filename :
202316
Link To Document :
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