This paper attempts to simulate changes in the mechanical properties of lungs through their equivalent changes in the human respiratory input impedance. The theory of electrical transmission lines and ladder networks is used to develop an equivalent model of the respiratory system. Three typical cases are investigated: healthy, asthma and chronic obstructive pulmonary disease. Simulation results are tested on different types of ladder network cells, such as RC, RLC and various simulating conditions of the whole system. Our conclusion is that an RLC cell gives results which are comparable to real measurements from healthy, asthma, or chronic obstructive pulmonary disease subjects and changes in the morphology
The aim of the present work is the building of a lumped nonlinear dynamic model of lung/airway mecha...
The article deals with development, design and implementation of a mathematical model of the human r...
<p>Resistance, inductance and capacitance are the analogs of mechanical resistance, inertance and co...
This paper attempts to simulate changes in the mechanical properties of lungs through their equivale...
his paper attempts to simulate changes in mechanical properties of lungs trough their equivalent cha...
Taking into account the self-similar recurrent geometrical structure of the human respiratory tree, ...
In this work, a re-visited model of the respiratory system is proposed. Identification of a recurren...
The self similar branching arrangement of the airways makes the respiratory system an ideal candidat...
This paper aims to provide the mechanical parameters of the respiratory airways (resistance, inertan...
The self similar branching arrangement of the airways makes the respiratory system an ideal candida...
Taking into account the self-similar recursive geometrical structure of the human respiratory tree, ...
This paper provides a model of the human respiratory system by taking into account the fractal struc...
The design of the mathematical model of the respiratory system is described in the study. The model ...
In this work, a set of physiologically based parametric models is used to estimate mimicked respirat...
A mathematical model of the respiratory system is introduced in this study. Geometrical dimensions o...
The aim of the present work is the building of a lumped nonlinear dynamic model of lung/airway mecha...
The article deals with development, design and implementation of a mathematical model of the human r...
<p>Resistance, inductance and capacitance are the analogs of mechanical resistance, inertance and co...
This paper attempts to simulate changes in the mechanical properties of lungs through their equivale...
his paper attempts to simulate changes in mechanical properties of lungs trough their equivalent cha...
Taking into account the self-similar recurrent geometrical structure of the human respiratory tree, ...
In this work, a re-visited model of the respiratory system is proposed. Identification of a recurren...
The self similar branching arrangement of the airways makes the respiratory system an ideal candidat...
This paper aims to provide the mechanical parameters of the respiratory airways (resistance, inertan...
The self similar branching arrangement of the airways makes the respiratory system an ideal candida...
Taking into account the self-similar recursive geometrical structure of the human respiratory tree, ...
This paper provides a model of the human respiratory system by taking into account the fractal struc...
The design of the mathematical model of the respiratory system is described in the study. The model ...
In this work, a set of physiologically based parametric models is used to estimate mimicked respirat...
A mathematical model of the respiratory system is introduced in this study. Geometrical dimensions o...
The aim of the present work is the building of a lumped nonlinear dynamic model of lung/airway mecha...
The article deals with development, design and implementation of a mathematical model of the human r...
<p>Resistance, inductance and capacitance are the analogs of mechanical resistance, inertance and co...