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Updated: Jun 6, 2026

A Microfluidic Model of Biomimetically Breathing Pulmonary Acinar Airways
Published on: May 9, 2016
Reduction of a linear complex model for respiratory system during Airflow Interruption
Ireneusz Jablonski1, Janusz Mroczka
1Department of Electronics, Wroclaw University of Technolgy, ul. B. Prusa 53/55, 50-317, Poland. irenuesz.jablonski@pwr.wroc.pl
Abstract:
The paper presents methodology of a complex model reduction to its simpler version - an identifiable inverse model. Its main tool is a numerical procedure of sensitivity analysis (structural and parametric) applied to the forward linear equivalent designed for the conditions of interrupter experiment. Final result - the reduced analog for the interrupter technique is especially worth of notice as it fills a major gap in occlusional measurements, which typically use simple, one- or two-element physical representations. Proposed electrical reduced circuit, being structural combination of resistive, inertial and elastic properties, can be perceived as a candidate for reliable reconstruction and quantification (in the time and frequency domain) of dynamical behavior of the respiratory system in response to a quasi-step excitation by valve closure.
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