DocumentCode :
1685050
Title :
Lung/airway dynamic model using ABM elements and PSPICE
Author :
Masana, Francesc N.
Author_Institution :
S.M. Palautordera, Barcelona, Spain
fYear :
2015
Firstpage :
204
Lastpage :
209
Abstract :
The aim of the present work is the construction of a nonlinear dynamic model of lung/airway mechanics using generic instead of specific software, in an attempt to offer an open simulation environment. Based on the analogy between pneumatic and electric magnitudes, an electrical equivalent circuit of the lung/airway mechanics is derived. Then, the nonlinear circuit elements are constructed by means of the powerful Analog Behavioral Modeling (ABM) building blocks and the system is solved using PSPICE. Five lumps are defined: two capacitors (elastances) corresponding to lung and collapsible airway segment and three resistors, corresponding to lung, collapsible airway segment and upper airway. The model does not attempt to mimic any particular system by adjusting a given set of parameters but instead to provide a tool to explore the relationship between a given parameter or set of parameters and the system response, in particular for the Forced Vital Capacity (FVC) maneuver.
Keywords :
equivalent circuits; lung; nonlinear dynamical systems; physiological models; pneumodynamics; ABM building block; ABM element; Analog Behavioral Modeling; FVC maneuver; PSPICE; capacitor; collapsible airway segment; elastance; electric magnitude; electrical equivalent circuit; forced vital capacity maneuver; generic software; lung-airway dynamic model; lung-airway mechanics; nonlinear circuit element; nonlinear dynamic model; open simulation environment; parameter set-system response relationship; parameter-system response relationship; pneumatic magnitude analogy; resistor; Atmospheric modeling; Capacitance; Integrated circuit modeling; Lungs; Mathematical model; Resistance; SPICE; Analog Behavioral Modeling; FVC maneuver; Nonlinear model; Open simulation environment; PSPICE; Respiratory System Model;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Mixed Design of Integrated Circuits & Systems (MIXDES), 2015 22nd International Conference
Conference_Location :
Torun
Print_ISBN :
978-8-3635-7806-0
Type :
conf
DOI :
10.1109/MIXDES.2015.7208511
Filename :
7208511
Link To Document :
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