Title :
Uncertainty in multiscale possibilistic nonlinear dynamical analysis of biosignals
Author_Institution :
Bioinf. Res. Group, Univ. of New South Wales, Canberra, ACT, Australia
Abstract :
A multiscale possibilistic nonlinear dynamical analysis method and its measure of uncertainty are presented in this paper. The proposed approach can be utilised for understanding complex mechanisms underlying the healthy and control of biomedical or physiological systems. As a focus on an example model system, the proposed method is applied to studying major adverse cardiac events using mass spectrometry signals.
Keywords :
cardiology; mass spectroscopy; measurement uncertainty; medical signal processing; nonlinear dynamical systems; biosignals; major adverse cardiac events; mass spectrometry; multiscale possibilistic nonlinear dynamical analysis; uncertainty; Biomedical measurements; Complexity theory; Entropy; Mass spectroscopy; Physiology; Time series analysis; Uncertainty; Nonlinear dynamical analysis; biosignals; possibility; proteomics; uncertainty;
Conference_Titel :
Biosignals and Biorobotics Conference (BRC), 2012 ISSNIP
Conference_Location :
Manaus
Print_ISBN :
978-1-4673-2476-2
DOI :
10.1109/BRC.2012.6222196