50
Views
1
CrossRef citations to date
0
Altmetric
Research Article

The volume dependence of stress relaxation in the rat respiratory system

&
Pages 137-143 | Received 18 Nov 2013, Accepted 02 Feb 2014, Published online: 13 Mar 2014

REFERENCES

  • Faffe DS, Zin WA: Lung parenchymal mechanics in health and disease. Physiol Rev. 2009;89:759–775.
  • Kochi T, Okubo S, Zin WA, Milic-Emili J: Flow and volume dependence of pulmonary mechanics in anesthetized cats. J Appl Physiol. 1988;64:441–450.
  • D'Angelo E, Calderini E, Torri G, Robatto FM, Bono D, Milic-Emili J: Respiratory mechanics in anesthetized paralyzed humans: effects of flow, volume, and time. J Appl Physiol. 1989;67:2556–2564.
  • Pesenti A, Pelosi P, Rossi N, Virtuani A, Brazzi L, Rossi A: The effects of positive end expiratory pressure on respiratory resistance in patients with the adult respiratory distress syndrome and in normal anesthetized subjects. Am Rev Resp Dis. 1991;144:101–107.
  • Pèrez Fontàn JJ: Effect of lung lavage on the stress relaxation of the respiratory system. J Appl Physiol. 1993;75:1536–1544.
  • D'Angelo E, Tavola M, Milic-Emili J: Volume and time dependence of respiratory system mechanics in normal anaesthetized paralysed humans. Eur Resp J. 2000;16:665–672.
  • Rubini A, Carniel EL, Parmagnani A, Natali A: Flow and volume dependence of rat airway resistance during constant flow inflation and deflation. Lung 2011;189:511–518.
  • Rubini A, El-Mazloum D, Morra F, Bosco G: The effect of body cooling on respiratory system mechanics and hysteresis in rats. Resp Physiol Neurobiol. 2013;189:52–58.
  • Bates JH, Rossi A, Milic-Emili J: Analysis of the behavior of the respiratory system with constant inspiratory flow. J Appl Physiol. 1985;58:1840–1848.
  • Rubini A, Redaelli M, Parmagnani A: The effect of angiotensin converting enzyme inhibition by captopril on respiratory mechanics in healthy rats. J Enz Inhib Med Chem. 2012;27:854–860.
  • Rubini A, Del Monte D, Catena V: Effects of the pneumoperitoneum and Trendelenburg position on respiratory mechanics in the rats by the end-inflation occlusion method. Ann Thor Med. 2012,7:205–209.
  • Rubini A, Porzionato A, Zara S, Cataldi A, Garetto G, Bosco G: The effect of acute exposure to hyperbaric oxygen on respiratory system mechanics in the rat. Lung 2013;191:459–466.
  • Rubini A: The effect of body warming on respiratory mechanics in rat. Resp Physiol Neurobiol. 2011;175:255–260.
  • Reta GS, Riva JA, Piriz H, Medeiros AS, Rocco PR, Zin WA: Effects of halothane on respiratory mechanics and lung histopathology in normal rats. Br J Anaesth. 2000;84:372–377.
  • Peratoner A, Nascimento CS, Santana MC, Cadete RA, Negri EM, Gullo A, Rocco PR, Zin WA: Effects of propofol on respiratory mechanic and lung histology in normal rats. Br J Anaesth. 2004;92:737–740.
  • Rubini A, Bondì M: Effect of the oestral cycle on respiratory mechanics in the rat. Acta Physiol (Oxf). 2007;189:379–383.
  • Chang HK, Mortola JP: Fluid dynamic factors in tracheal pressure measurement. J Appl Physiol. 1981;51:218–225.
  • Bates JH, Hunter IW, Sly PD, Okubo S, Filiatrault S, Milic-Emili J: Effect of valve closure time on the determination of respiratory resistance by flow interruption. Med Biol Eng Comp. 1987;25:136–140.
  • Bates JHT, Ludwig MS, Sly PD, Brown K, Martin JG, Fredberg JJ: Interrupter resistance elucidated by alveolar pressure measurements in open-chest normal dogs. J Appl Physiol. 1988;65:408–414.
  • Bates JHT, Abe T, Romero PV, Sato J: Measurements of alveolar pressure in closed-chest dogs during flow interruption. J Appl Physiol. 1989;67:488–492.
  • Rubini A, Del Monte D, Catena V: Erythropoietin acutely decreases airway resistance in the rat. Reg Pept. 2012;178:76–79.
  • Rubini A: IL-6 increases airway resistance in the rat. Cytokine 2010;51:266–273.
  • Rubini A, Carniel EL, Natali AN: The effect of body warming on respiratory system stress recovery in the rat. Acta Bioeng Biom. 2012;14:59–66.
  • Rubini A, Bosco G: The effect of body temperature on the dynamic respiratory system compliance-breathing frequency relationship in the rat. J Biol Phys. 2013;39:411–418.
  • Auler JO Jr, Saldiva PH, Martins MA, Carvalho CR, Negri EM, Hoelz C, Zin WA: Flow and volume dependence of respiratory system mechanics during constant flow ventilation in normal subjects and in adult respiratory distress syndrome. Crit Care Med. 1990;18:1080–1086.
  • Briscoe WA, Du Bois AP: The relationship between airway resistance, airway conductance and lung volume in subjects of different age and body size. J Clin Inv. 1958;37:1279–1285.
  • Hirai T, Mc Keown KA, Gomes RF, Bates JH: Effects of lung volume on lung and chest wall mechanics in rat. J Appl Physiol. 1999;86:16–21.
  • Suki B, Barabasi AL, Lutchen KR: Lung tissue viscoelasticity: a mathematical framework and its molecular basis. J Appl Physiol. 1994;76:2749–2759.
  • Eissa NT, Ranieri VM, Corbeil C, Chassè M, Robatto FM, Braidy J, Milic-Emili J: Analysis of behaviour of respiratory system in ARDS patients: effects of flow, volume and time. J Appl Physiol. 1991;70:2719–2729.
  • Tantucci C, Corbeil C, Chassè M, Robatto FM, Nava S, Braidy J, Matar N, Milic-Emili J: Flow and volume dependence of respiratory system flow resistance in patients with adult respiratory distress syndrome. Am Rev Resp Dis. 1992;145: 355–360.
  • Guèrin C, Coussa ML, Eissa NT, Corbeil C, Chassè M, Braidy J, Matar N, Milic-Emili J: Lung and chest wall mechanics in mechanically ventilated COPD patients. J Appl Physiol. 1993;74:1570–1580.
  • Ganzert S, Möller K, Steimann D, Schumann S, Guttmann J: Pressure-dependent stress relaxation in acute respiratory distress syndrome and healthy lungs: an investigation based on a visco-elastic model. Crit Care 2009;13:R199.
  • Protti A, Cressoni M, Santini A, Langer T, Mietto C, Febres D, Chierichetti M, Coppola S, Conte G, Gatti S, Leopardi O, Masson S, Lombardi L, Lazzerini M, Rampoldi E, Cadringher P, Gattinoni L: Lung stress and strain during mechanical ventilation: any safe threshold? Am J Resp Crit Care Med. 2011;183:1354–1362.
  • Vobruba V, Klimenko OV, Kobr J, Cerna O, Pokorna P, Mikula I, Hridel J, Brantova O, Martasek P: Effects of high tidal volume mechanical ventilation on production of cytokines, iNOS, and MIP-1β proteins in pigs. Exp Lung Res. 2013;39:1–8.
  • Martins MA, Saldiva PH, Caldeira MP, Vieira JE, Zin WA: Respiratory system, lung and chest wall mechanics in guinea pigs. Braz J Med Biol Res. 1988;21:353–363.
  • Saldiva PHN, Cardoso WV, Caldeira MPR, Zin WA: Mechanics in rats by end-inflation occlusion and single-breath methods. J Appl Physiol. 1987;63:1711–1718.
  • D'Angelo E, Robatto FM, Calderini E, Tavola M, Bono D, Torri G, Milic-Emili J: Pulmonary and chest wall mechanics in anesthetized paralyzed humans. J Appl Physiol. 1991;70:2602–2610.
  • Polese G, Rossi A, Appendini L, Brandi G, Bates JHT, Brandolese R: Partitioning of respiratory mechanics in mechanically ventilated patients. J Appl Physiol. 1991;71:2425–2433.
  • Pelosi P, Croci M, Ravagnan I, Vicardi P, Gattinoni L: Total respiratory system, lung and chest wall mechanics in sedated-paralyzed postoperative morbidly obese patients. Chest 1996;109:144–151.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.