• DocumentCode
    1951118
  • Title

    Modeling of nonlinear biological phenomena modeled by S-systems using Bayesian method

  • Author

    Mansouri, M. ; Nounou, H. ; Nounou, M. ; Datta, A.A.

  • Author_Institution
    Electr. & Comput. Eng. Program, Texas A&M Univ. at Qatar, Doha, Qatar
  • fYear
    2012
  • fDate
    17-19 Dec. 2012
  • Firstpage
    305
  • Lastpage
    310
  • Abstract
    A biological dynamic pathway is usually modeled as a nonlinear system described by a set of nonlinear ODEs. A main challenge in modeling of biological systems is the estimation of the model parameters. In these cases, estimating these variables or parameters from other easily obtained measurements can be extremely useful. This paper addresses states and parameters estimation of biological phenomena modeled by S-systems using Bayesian approach. Nonlinear states and parameters estimation is a major issue in biology systems, since it represents a key step for achieving quantitative and qualitative information from dynamical and structured models of biology systems. Thus, we propose to use Particle Filtering (PF) to estimate nonlinear states and model parameters of the Cad System in E. coli (CSEC) in biology. For most nonlinear systems and non-Gaussian noise observations, closed-form analytic expression of the posterior distribution of the state is untractable. To overcome this drawback, a non-parametric particle filtering has recently gained popularity. Simulation analysis demonstrates that the Bayesian algorithm can well estimate the unknown model parameters under the disturbs of the noise, and it provides an efficient accuracies for the states estimation. Evaluation of the methods was performed by using Root Mean Square Error (RMSE).
  • Keywords
    Bayes methods; biology computing; cellular biophysics; microorganisms; nonlinear differential equations; nonlinear dynamical systems; parameter estimation; Bayesian method; CSEC; E. coli; S-systems; biological dynamic pathway; biology systems; cad system; non-Gaussian noise observations; nonlinear ODE; nonlinear biological phenomena; parameter estimation; particle filtering; posterior distribution; root mean square error; simulation analysis; Bayesian approach; Cad System in E. coli; States and parameters estimation; nonlinear biological system;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Biomedical Engineering and Sciences (IECBES), 2012 IEEE EMBS Conference on
  • Conference_Location
    Langkawi
  • Print_ISBN
    978-1-4673-1664-4
  • Type

    conf

  • DOI
    10.1109/IECBES.2012.6498128
  • Filename
    6498128