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  1.  57
    A bond graph model of the cardiovascular system.V. Le Rolle, A. I. Hernandez, P. Y. Richard, J. Buisson & G. Carrault - 2005 - Acta Biotheoretica 53 (4):295-312.
    The study of the autonomic nervous system (ANS) function has shown to provide useful indicators for risk stratification and early detection on a variety of cardiovascular pathologies. However, data gathered during different tests of the ANS are difficult to analyse, mainly due to the complex mechanisms involved in the autonomic regulation of the cardiovascular system (CVS). Although model-based analysis of ANS data has been already proposed as a way to cope with this complexity, only a few models coupling the main (...)
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  2.  10
    A Bond Graph Model of the Cardiovascular System.V. Rolle, A. I. Hernandez, P. Y. Richard, J. Buisson & G. Carrault - 2005 - Acta Biotheoretica 53 (4):295-312.
    The study of the autonomic nervous system (ANS) function has shown to provide useful indicators for risk stratification and early detection on a variety of cardiovascular pathologies. However, data gathered during different tests of the ANS are difficult to analyse, mainly due to the complex mechanisms involved in the autonomic regulation of the cardiovascular system (CVS). Although model-based analysis of ANS data has been already proposed as a way to cope with this complexity, only a few models coupling the main (...)
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  3.  40
    Overview of carmem: A new dynamic quantitative cardiac model for ECG monitoring and its adaptation to observed signals.A. I. Hernández, G. Carrault, F. Mora & A. Bardou - 2000 - Acta Biotheoretica 48 (3-4):303-322.
    Different approaches have been proposed in order to achieve knowledge integration for coronary care monitoring applications, usually in the form of expert systems. The clinical impact of these expert systems, which are based only on "shallow" knowledge, has not been remarkable due to the difficulties associated with the construction and maintenance of a complete knowledge base. Model-based systems represent an alternative to these problems because they allow efficient integration of the "deep" knowledge on the underlying physiological phenomena being monitored. In (...)
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