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Tytuł artykułu

Analysis of properties of a lung mechanical model during artificial ventilation using measurement station

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper shows the usefulness of the lung mechanical model for time and frequency characteristics reconstruction proper for the mechanics of an adult human respiratory system in its various regimes of work. The complex set-up for measurements of human respiratory system mechanics is presented. Two separate scenarios were created, firstly, the mechanical model was examined using standard mechanical ventilation routine with embedded Interrupter Technique and then the Optimized Ventilator Waveform technique was tested. An analysis of experimental results is presented, as well as an outline of the issues and problems revealed during investigations.
Rocznik
Strony
427--438
Opis fizyczny
Bibliogr. 19 poz., fot., rys., tab.
Twórcy
autor
Bibliografia
  • [1] I. Jabłoński, J. Mroczka: “The problem of measurement data complexity for example of the general model of the central respiratory generator and recurrent plots analysis”. Metrol. Meas. Syst., vol. XV, no. 4, 2008, pp. 457-472.
  • [2] A.G. Polak, D. Wysoczański, J. Mroczka: “A multi-method approach to measurement of respiratory system mechanics”. Metrol. Meas. Syst., vol. XIII, no. 1, 2006, pp. 3-17.
  • [3] I. Jabłoński, J. Mroczka: “Computer-aided evaluation of a new interrupter algorithm in respiratory mechanics measurement”. Biocybernetics and Biomedical Engineering, 2006 vol. 26, no. 3, pp. 33-47.
  • [4] I. Jabłoński J. Mroczka: “Frequency-domain identification of the respiratory system model during the interrupter experiment”. Measurement, vol. 42, no. 3, 2009, pp. 390-398.
  • [5] I. Jabłoński, J. Mroczka: “Frequency indexes of respiration during interrupter experiment”. Metrol. Meas. Syst., vol. XV, no. 2, 2008, pp. 153-163.
  • [6] D.W. Kaczka, E.P. Ingenito, K.R. Lutchen: “Technique to Determine Inspiratory Impedance during Mechanical Ventilation: Implications for Flow Limited Patients”. Annals of Biomedical Engineering, no. 27, 1999, pp. 340-355.
  • [7] P.F. Baconnier, P. Carry, A. Eberhard, J. Perdrix, J. Fargnoli: “A computer program for automatic measurement of respiratory mechanics in artificially ventilated patients”. Computer Methods and Programs in Biomedicine, vol. 47, 1995, pp. 205-220.
  • [8] A.G. Polak, J. Mroczka: “Nonlinear model for mechanical ventilation of human lungs”. Computers in Biology and Medicine, vol. 36, 2006, pp. 41-58.
  • [9] J. Gajda, P. Piwowar: “Identification of the human respiratory system during experiment with negative pressure impulse excitation”. Metrol. Meas. Syst., vol. XVI, no. 4, 2009, pp. 569-582.
  • [10] J.H.T. Bates, P. Baconnier, J. Milic-Emili: “A theoretical analysis of interrupter technique for measuring respiratory mechanics”. J. Appl. Physiol., vol. 64, 1988, pp. 2204-2214.
  • [11]K.R. Lutchen, K. Yang, D.W. Kaczka, B. Suki: “Optimal ventilation waveforms for estimating lowfrequency respiratory impedance”. J. Appl. Physiol., vol. 75, 1993, pp. 478-488.
  • [12]A.B. Dubois, A.W. Brody, D.H. Lewis, B.F. Burgess Jr.: “Oscillation mechanics of lungs and chest in man”. J. Appl. Physiol., vol. 8, 1956, pp. 587-594.
  • [13]K.R. Lutchen, B. Suki: “Understanding pulmonary mechanics using the forced oscillations technique”. Bioengineering Approaches to Pulmonary Physiology and Medicine, ed. Khoo, Plenum Press, New York 1996, pp. 227-253.
  • [14] J. Von Neergaard, K. Wirz: “Die Messung der Strömungswiderstände in den Atemwegen des Menschen, insbesondere bei Asthma und Emphysem”. Z. Klin. Med., no. 105, 1927, pp. 51-82.
  • [15]G. Liistro, D. Stanescu, D. Rodenstein, C. Veriter: “Reassessment of the interruption technique for measuring flow resistance in humans”. J. Appl. Physiol., no. 67, 1989, pp. 933-937.
  • [16] I. Jabłoński, J. Mroczka: “A forward model of the respiratory system during airflow interruption”. Metrol. Meas. Syst., vol. XVI, no. 2, 2009, pp. 219-232.
  • [17] J. Mroczka, D. Szczuczyński: “Inverse problems formulated in terms of first-kind Fredholm integral equations in indirect measurements”. Metrol. Meas. Syst., vol. XVI, no. 3, 2009, pp. 333-357.
  • [18] I. Jabłoński, J. Mroczka: “A station for the respiratory mechanics measurement by occlusion techniques”. Metrol. Meas. Syst., vol. XIV, no. 2, 2007, pp. 229-240.
  • [19]K. Jakuszkin, J. Mroczka: „Analiza właściwości modelu mechanicznego płuc wykorzystująca technikę zoptymalizowanej fali wentylacyjnej”. Modelowanie i Pomiary w Medycynie, 2009, Krynica. (in Polish)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0069-0010
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