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Reconstruction of gastric slow wave from finger photoplethysmographic signal using radial basis function neural network
V. Srinivasa Chakravarthy,
Published in
2011
PMID: 21748397
Volume: 49
   
Issue: 11
Pages: 1241 - 1247
Abstract
Extraction of extra-cardiac information from photoplethysmography (PPG) signal is a challenging research problem with significant clinical applications. In this study, radial basis function neural network (RBFNN) is used to reconstruct the gastric myoelectric activity (GMA) slow wave from finger PPG signal. Finger PPG and GMA (measured using Electrogastrogram, EGG) signals were acquired simultaneously at the sampling rate of 100 Hz from ten healthy subjects. Discrete wavelet transform (DWT) was used to extract slow wave (0-0.1953 Hz) component from the finger PPG signal; this slow wave PPG was used to reconstruct EGG. A RBFNN is trained on signals obtained from six subjects in both fasting and postprandial conditions. The trained network is tested on data obtained from the remaining four subjects. In the earlier study, we have shown the presence of GMA information in finger PPG signal using DWT and cross-correlation method. In this study, we explicitly reconstruct gastric slow wave from finger PPG signal by the proposed RBFNN-based method. It was found that the network-reconstructed slow wave provided significantly higher (P < 0.0001) correlation (≥0.9) with the subject's EGG slow wave than the correlation obtained (≈0.7) between the PPG slow wave from DWT and the EEG slow wave. Our results showed that a simple finger PPG signal can be used to reconstruct gastric slow wave using RBFNN method. © 2011 International Federation for Medical and Biological Engineering.
About the journal
JournalMedical and Biological Engineering and Computing
ISSN01400118
Open AccessNo
Concepts (35)
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    Clinical application
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    CROSS CORRELATION METHODS
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    ELECTROGASTROGRAM
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    GASTRIC SLOW WAVES
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    Healthy subjects
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    PHOTOPLETHYSMOGRAPHIC SIGNALS
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    PHOTOPLETHYSMOGRAPHY
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    RADIAL BASIS FUNCTION NEURAL NETWORKS
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    Research problems
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    Sampling rates
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    Slow wave
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    Discrete wavelet transforms
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    PLETHYSMOGRAPHY
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    Radial basis function networks
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    Neural networks
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    Adult
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    Article
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    Artificial neural network
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    Finger
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    Human
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    Male
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    Methodology
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    PHOTOELECTRIC PLETHYSMOGRAPHY
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    Physiology
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    Signal processing
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    STOMACH
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    STOMACH EMPTYING
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    Fingers
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    GASTRIC EMPTYING
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    Humans
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    Neural networks (computer)
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    PHOTOPLETHYSMOGRAPHY
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    Signal processing, computer-assisted
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    STOMACH
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    Young adult