The modeling of physiological systems via mathematical equations reflects the calculation procedure more than the structure of the real system modeled, with the simulation environment SIMULINK™ being one of the best suited to this strategy. Nevertheless, object-oriented modeling is spreading in current simulation environments through the use of the individual components of the model and its interconnections to define the underlying dynamic equations. In this paper we describe the use of the SIMSCAPE™ simulation environment in the object-oriented modeling of the closed loop cardiovascular system. The described approach represents a valuable tool in the teaching of physiology for graduate medical students
CVSim is a lumped-parameter model of the human cardiovascular system that has been developed and use...
In the present document, six mathematical models of the cardiovascular system are studied and implem...
grown increasingly complex, in order to allow them to capture more and more details of the systems t...
The modeling of physiological systems via mathematical equations reflects the calculation procedure ...
Object-oriented modeling is spreading in current simulation of physiological systems through the use...
Object-oriented modeling is spreading in current simulation environments through the use of the ind...
The modeling of physiological control systems via mathematical equations reflects the calculation p...
The modeling of physiological control systems via mathematical equations reflects the calculation pr...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
Nowadays, cardiovascular diseases together with chronic obstructive pulmonary diseases represent the...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The modeling of physiological control systems via mathematical equations reflects the calculation pr...
Patient-specific cardiovascular simulation has become a paradigm in cardiovascular research and is e...
CVSim is a lumped-parameter model of the human cardiovascular system that has been developed and use...
In the present document, six mathematical models of the cardiovascular system are studied and implem...
grown increasingly complex, in order to allow them to capture more and more details of the systems t...
The modeling of physiological systems via mathematical equations reflects the calculation procedure ...
Object-oriented modeling is spreading in current simulation of physiological systems through the use...
Object-oriented modeling is spreading in current simulation environments through the use of the ind...
The modeling of physiological control systems via mathematical equations reflects the calculation p...
The modeling of physiological control systems via mathematical equations reflects the calculation pr...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
Nowadays, cardiovascular diseases together with chronic obstructive pulmonary diseases represent the...
The high prevalence of cardiovascular diseases has provoked a raising interest in the development of...
The modeling of physiological control systems via mathematical equations reflects the calculation pr...
Patient-specific cardiovascular simulation has become a paradigm in cardiovascular research and is e...
CVSim is a lumped-parameter model of the human cardiovascular system that has been developed and use...
In the present document, six mathematical models of the cardiovascular system are studied and implem...
grown increasingly complex, in order to allow them to capture more and more details of the systems t...