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Activation, metabolism, and perfusion of the heart simulation and experimental models

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  • "The basic mechanism underlying directional differences in excitability, con duction velocity, andsafetyfactor thatleadtocircusmovementreentry incardiac muscle is generally attributed to a spatial difference in the refractory period as originally described by Mines [1] or to a depressed segment as described by Schmitt and Erlanger [2]. A departure from this depolarization in cardiac muscle involve quantities, such as Vmax' that are not directly descriptive of the underlying mechanisms of propagation."

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  • "Electronic books"
  • "Congressen (vorm)"
  • "Conference papers and proceedings"
  • "Conference papers and proceedings"@en

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  • "Activation, metabolism, and perfusion of the heart simulation and experimental models"@en
  • "Activation, Metabolism and Perfusion of the Heart Simulation and experimental models"
  • "Activation, metabolism and perfusion of the heart : simulation and experimental models; [proceedings of the 3rd Henry Goldberg International Workshop on Simulation and Modeling of the Cardiac System, 31 March - 2 April 1986, organized jointly by Technion, Israel Institute of Technology, Haifa, Israel and Rutgers State University of New Jersey, Piscataway, NJ, USA]"
  • "Activation, metabolism, and perfusion of the heart : simulation and experimental models"
  • "Activation, metabolism and perfusion of the heart : simulation and experimental models"
  • "Activation, Metabolism and Perfusion of the Heart Simulation and Experimental Models"@en