Literature DB >> 9655729

The pressure-volume curve is greatly modified by recruitment. A mathematical model of ARDS lungs.

K G Hickling1.   

Abstract

A mathematical model of the ARDS lung, with simulated gravitational superimposed pressure, evaluated the effect of varying alveolar threshold opening pressures (TOP), PEEP and peak inspiratory pressure (PIP) on the static pressure-volume (PV) curve. The lower inflection point (Pflex) was affected by SP and TOP, and did not accurately indicate PEEP required to prevent end-expiratory collapse. Reinflation of collapsed lung units (recruitment) continued on the linear portion of the PV curve, which had a slope at any volume greater than the total compliance of aerated alveoli. As recruitment diminished, the reduced PV slope could produce an upper Pflex at 20 to 30 cm H2O pressure. An upper Pflex caused by alveolar overdistension could be modified or eliminated by recruitment with high TOP. With constant PIP as PEEP increased, and TOP range of 5 to 60 cm H2O, PEEP to prevent end-expiratory collapse was indicated by minimum PV slope above 20 cm H2O, minimum hysteresis, and maximum volume at a pressure of 20 cm H2O. With constant inflation volume as PEEP increased, the effect on PV slope was unpredictable. Although increased PV slope indicated recruitment, maximum PV slope usually underestimated PEEP required to prevent end-expiratory collapse. Therefore, with this model the PV curve did not reliably predict optimal ventilator settings.

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Year:  1998        PMID: 9655729     DOI: 10.1164/ajrccm.158.1.9708049

Source DB:  PubMed          Journal:  Am J Respir Crit Care Med        ISSN: 1073-449X            Impact factor:   21.405


  71 in total

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Review 2.  The pulmonary physician in critical care * 7: ventilator induced lung injury.

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Authors:  C Svantesson; B Drefeldt; S Sigurdsson; A Larsson; L Brochard; B Jonson
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Authors:  Arthur S Slutsky; Yumiko Imai
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5.  Effects of positive end-expiratory pressure on the sigmoid equation in experimental acute lung injury.

Authors:  Frederique Bayle; Claude Guerin; Jean-Paul Viale; Jean-Christophe Richard; Guy Annat
Journal:  Intensive Care Med       Date:  2004-09-10       Impact factor: 17.440

6.  Static pressure-volume curve characteristics are moderate estimators of optimal airway pressures in a mathematical model of (primary/pulmonary) acute respiratory distress syndrome.

Authors:  Dick G Markhorst; Huibert R van Genderingen; Adrianus J van Vught
Journal:  Intensive Care Med       Date:  2004-09-15       Impact factor: 17.440

7.  Dynamic elastic pressure-volume loops in healthy pigs recorded with inspiratory and expiratory sinusoidal flow modulation. Relationship to static pressure-volume loops.

Authors:  Ulrika Bitzén; Björn Drefeldt; Lisbet Niklason; Björn Jonson
Journal:  Intensive Care Med       Date:  2004-02-13       Impact factor: 17.440

8.  Monitoring of intratidal lung mechanics: a Graphical User Interface for a model-based decision support system for PEEP-titration in mechanical ventilation.

Authors:  S Buehler; S Lozano-Zahonero; S Schumann; J Guttmann
Journal:  J Clin Monit Comput       Date:  2014-02-19       Impact factor: 2.502

9.  Reliability of transpulmonary pressure-time curve profile to identify tidal recruitment/hyperinflation in experimental unilateral pleural effusion.

Authors:  P Formenti; M Umbrello; J Graf; A B Adams; D J Dries; J J Marini
Journal:  J Clin Monit Comput       Date:  2016-07-20       Impact factor: 2.502

10.  The role of time and pressure on alveolar recruitment.

Authors:  Scott P Albert; Joseph DiRocco; Gilman B Allen; Jason H T Bates; Ryan Lafollette; Brian D Kubiak; John Fischer; Sean Maroney; Gary F Nieman
Journal:  J Appl Physiol (1985)       Date:  2008-12-12
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