DocumentCode
1720334
Title
Quantitative Seismocrardiographic signal evaluation based on Hilbert Huang transformation
Author
Stork, Milan ; Trefny, Zdenek
Author_Institution
RICE/Univ. of West Bohemia, Plzen, Czech Republic
fYear
2012
Firstpage
301
Lastpage
304
Abstract
Monitoring physiological signs in noninvasive way can significantly reduce the stress impact of apparatus utilization on patients, particularly to those with a certain degree of physical limitation. However, up to now, only few devices have been proposed in the literature. One of such principle is Quantitative Seismocardiography examinations (QSCG). It is possible to determine heart rate and respiratory rate and moreover the important points (several amplitudes and time points) of QSCG signal components. Time-frequency domain methods, such as the wavelet transform, short-time discrete Fourier transform, matching pursuit, was usually used for this task, because the QSCG signal is quasi-stationary. The Hilbert-Huang transform was designed to process non-stationary signals (e.g. for Electro Encephalographic Signals). Therefore, it should be also suitable for processing QSCG signals as well. This paper presents results gained by Hilbert-Huang transform, which was used for QSCG signal evaluating. The basic information and experimental results are presented.
Keywords
Hilbert transforms; accelerometers; biomechanics; cardiology; medical signal processing; pneumodynamics; vibration measurement; Hilbert-Huang transformation; QSCG signal evaluation; heart rate determination; noninvasive physiological signal monitoring; nonstationary signals; quantitative seismocardiography examinations; quantitative seismocrardiographic signal evaluation; respiratory rate determination; Digital filters; Force; Heart rate; Time frequency analysis; Wavelet transforms; Hilbert Huang transform; cardiac force; electrocardiography; systolic force; wavelet transform;
fLanguage
English
Publisher
ieee
Conference_Titel
Applied Electronics (AE), 2012 International Conference on
Conference_Location
Pilsen
ISSN
1803-7232
Print_ISBN
978-1-4673-1963-8
Type
conf
Filename
6328865
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