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Identification of the human respiratory system during experiment with negative pressure impulse excitation

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article describes an innovative measurement method enabling one to identify mechanical parameters of the respiratory tract. The method is compared with traditional techniques such as the forced oscillation technique (FOT), forced expiration technique, and the interrupter technique (IT). The developed characteristics of the method were examined by simulation and experiments. The results confirmed its specificity and sensitivity.
Rocznik
Strony
569--582
Opis fizyczny
Bibliogr. 39 poz., rys., tab., wykr.
Twórcy
autor
autor
  • AGH University of Science and Technology, Faculty of Electrical Engineering, Automatics, IT and Electronics, Department of Measurement and Instrumentation, Al. Mickiewicza 30, 30-059 Kraków, Poland, jgajda@agh.edu.pl
Bibliografia
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  • [7] B. Dubois, A.W. Brody, D.H. Lewis, B.F. Burgess: “Oscillation Mechanics of the Lung and Chest in Humans”. Journal of Applied Physiology, vol. 8, 1956, pp. 587-594.
  • [8] C.A. Valta, Y. Ploysongsang, L. Eltayara, J. Sulc, J. Milic-Emili: “A simple method to monitor performance of forced vital capacity”. Journal of Applied Physiology, vol. 80, no. 2, 1996, pp. 693-698.
  • [9] E.F.M. Wouters: Bronchial Response in COPD Measured by Forced Oscillation Technique. Ph. Thesis, University Hospital Maastricht, 1987.
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  • [12] G. Buchała, J. Gajda: „Identyfikacja impedancji wejściowej dróg oddechowych metodą czasową - badania symulacyjne”. I Symposium MPM’99, Krynica, 1999. (in Polish)
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  • [15] 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.
  • [16] I. Jabłoński, J. Mroczka: “Frequency indexes of respiration during interrupter experiment”. Metrol. Meas. Syst., vol. XV, no. 2, 2008, pp. 153-163.
  • [17] 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.
  • [18] I. Jabłoński, J. Mroczka: “Interrupter valve kinematics in the issues of parameter estimation of the respiratory system model”. Metrol. Meas. Syst., vol. XIV, no. 3, 2007, pp. 339-350.
  • [19] J. Mead: “Contribution of compliance of airways to frequency - dependent behaviour of lungs”. Journal of Applied Physiology, no. 26, 1969, pp. 670-673.
  • [20] J. Mead, J.L. Whittenberger: “Evaluation of airway interruption technique as a method for measuring pulmonary airflow resistance”, Journal of Applied Physiology, vol. 6, no. 7, 1954, pp. 408-16.
  • [21] 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.
  • [22] J. Nagels, F. J. Landser, L. Van der Linden, J. Clement, K. P. Van de Woestijne: “Mechanical properties of lungs and chest wall during spontaneous breathing”. Journal of Applied Physiology, no. 49, 1980, pp. 171-177.
  • [23] J. Radliński, W. Latawiec, W. Tomalak, W. Myszkal: ”Korekcja wartości impedancji oddechowej za pomocą indywidualnych i średnich wartości impedancji pozatorakalnych dróg oddechowych”. Symposium MPM’03, Krynica 2003. (in Polish)
  • [24] K.R. Lutchen, B. Suki: “Understanding pulmonary mechanics using the forced oscillations technique”. Bioengineering Approaches to Pulmonary Physiology and Medicine. Edited by Khoo MCK . New York, Plenum Press, 1996, pp. 227-53.
  • [25] K. Von Neergaard, K. Wirz: “Die Messung der Stroemungswiderstaende in den Atemwegen des Menschen, insbesondere bei Asthma und Emphysen“. Z Klin Med., no. 105, 1927, pp. 51-82.
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  • [28] N.G. Kolouris, P. Valta, A. Lavoie C. Corbeil M. Chasse J., Braidy, J. Milic: “A simple method to detect expiratory flow limitation during spontaneous breathing”. European Respir. J., no. 8, 1995, pp. 306-313.
  • [29] P. Piwowar: Pomiary mechanicznych parametrów dróg oddechowych metodą wymuszania krótkotrwałych, ujemnych impulsów ciśnienia. Doctoral Thesis, AGH University of Science and Technology, Kraków 2007. (in Polish)
  • [30] R. E. Hyatt: “Forced Expiration”. Handbook of Physiology. The Respiratory System, vol. III, P.T. Macklem and J. Mead., Bethesda MD, 1986, pp. 295-314.
  • [31] R. Peslin: “Computer simulation of respiratory impedance and flow transfer functions during high frequency oscillations”. Br J Anaesth., no. 63, 1989, pp. 91S-94S.
  • [32] R. Peslin, C. Duririer, C. Gallina: “Total respiratory transfer and input impedances in humans”. Journal of Applied Physiology, no. 59, 1985.
  • [33] R. Peslin, C. Duvivier, J. Didelon, C. Gallina: “Respiratory impedance measured with head generator to minimize upper airway shunt”. Journal of Applied Physiology, no. 59, 1985, pp. 1790-1795.
  • [34] R. Peslin, J. Papon, C. Duvivier, J. Richalet: “Frequency response of the chest: modelling and parameter estimation”. Journal of Applied Physiology, no. 35, 1975.
  • [35] W. Latawiec, J. Radliński, W. Tomalak, W. Myszkal: „Impedancja pozatorakalnych dróg oddechowych”. Symposium MPM’03, Krynica, 2003. (in Polish)
  • [36] W. Tomalak: “Respiratory system models for the interpretation of respiratory impedance”. Symposium MiSSP’98, Krynica, 1998.
  • [37] W. Tomalak, J. Radliński: „Wymaganie metrologiczne dla urządzeń umożliwiających wykonania badania spirometrycznego”. Pneumonologia i Alergologia Polska, vol. 2, sup. 2, Warszawa, 2004. (in Polish)
  • [38] W. Vincken, H. Ghezzo, M.G. Cosio: “Maximal static respiratory pressure in adults: normal values and their relationship to determinants of respiratory function”. Bull Eur Physiopathol Respir, 1983.
  • [39] Z. Szkulmowski: Monitorowanie oddychania. Online http://www.anestezjologia.bydgoszcz.pl.(in Polish)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSW1-0062-0004
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