Additional files

Here you can find the additional documents relatted with some presentations:
  • Nicola Bellomo:
    (1) New Paradigms towards a Biological-Mathematical Theory of Modelling Complex Multicellular Systems timetable
    (2) Mathematical topics on the modelling complex multicellular systems and tumor inmune cells competition timetable
    (3) WEB site of the network http://calvino.polito.it/~mcrtn
  • Mari Paz Calvo: Numerical simulation and visualization timetable
  • Miguel Ángel Herrero: Reaction-Diffusion equations timetable
  • Courses (5 hours lectures)

  • Reaction-Diffusion equations (program)
    M. A. Herrero (U. Complutense de Madrid, Spain)
  • An introduction to developmental biology (program)
    H. Meinhardt (Max Planck Institut, Tübingen, Germany)
  • Oscillations and their synchronization (program)
    R. Ortega, J. Soler (U. Granada, Spain)
  • A model organism: Dictyostelium discoideum (program)
    R. Escalante, L. Sastre (Instituto de Investigaciones Biomédicas, CSIC/UAM, Madrid, Spain)
  • Numerical simulation and visualization (program)
    M. P. Calvo (U. Valladolid, Spain)

  • Seminar of invited speakers (1 or 2 hours lectures)

  • Development of methods of the mathematical kinetic theory and non-equilibrium statistical mechanics to mathematical biology focused on cellular dynamics and immune competition
        N. Bellomo (Politecnico di Torino, Italy)
  • The dynamics of tumor growth
        A. Brú (U. Complutense de Madrid, Spain)
  • Homogenized limits in visual transduction: The role of the incisures
        E. Di Benedetto (Vanderbilt University, U.S.A.)
  • Shaping the frontier between living or non-living beings
        J. M. García Ruiz (Instituto Andaluz de Ciencias de la Tierra, U. Granada, Spain)
  • Exploring pattern formation in Escherichia coli swarming colonies: challenges for mathematical modeling
        J. M. Gómez (Centro Nacional de Biotecnología, Spain)
  • Models of ischemic stroke
        E. Grenier (E.N.S. Lyon, France)
  • Some connections between Keller-Segel type models
        J. Nieto (U. Granada, Spain)
  • Mathematical modelling and numerical simulation of cardiac electrophysiology: what can mathematics say about abnormal heart rythms?
        V. Pérez García (U. Castilla la Mancha, Spain)
  • The mathematical model of cardiovascular system
        A. Quarteroni (U. Lausanne, Switzerland)
  • A few cartoons on Chemotaxis
        M. Rascle (Université de Nice Sophia Antipolis, France)
  • Cell motitliy based on the dynamics of the actin network
        C. Schmeiser (Technische Universität Wien, Austria)
  • The electrophysiology of NRK Fibroblasts: A modelling study
        J. Torres (Universidad de Granada, Spain)
  • Bioinformatics challenges in the analysis of biological networks
        A. Valencia (Centro Nacional de Biotecnología, Spain)