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The purpose of this modeling paper is to show and, in some extent, to explore the utility of one nonlinear tool, the recurrence plot, in assessing physiological systems and states, for example of the respiratory system. During investigations, the authors first explore the question of interrelations between regular and disordered processes, implying remarkable influences of noise on rhythmicity of the physiological systems, here: the respiratory system. Next, the signals acquired in the Bonhoeffer-van der Pol model of the central respiratory generator are the basis for data analysis; accordingly to Paydarfar et al., computational studies of the equations (1), whose qualitative behaviour is representative of many excitable system, are able to show phase responses adequate to experimental findings in the animal, in the context of phase resetting of the central respiratory oscillator. The applied topological (qualitative) description and its quantitative measures of complexity document the important sensitivity to temporal variations of the data set compositions.
Czasopismo
Rocznik
Tom
Strony
457--472
Opis fizyczny
Bibliogr. 30 poz., rys., wykr.
Twórcy
autor
autor
- Wroclaw University of Technology, Chair of Electronic and Photonic Metrology, Poland, ireneusz.jablonski@pwr.wroc.pl
Bibliografia
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Bibliografia
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