Literature DB >> 22488004

Matching positive end-expiratory pressure to intra-abdominal pressure prevents end-expiratory lung volume decline in a pig model of intra-abdominal hypertension.

Adrian Regli1, Jakob Chakera, Bart L De Keulenaer, Brigit Roberts, Bill Noffsinger, Bhajan Singh, Peter V van Heerden.   

Abstract

OBJECTIVE: Intra-abdominal hypertension is common in critically ill patients and is associated with increased morbidity and mortality. In a previous experimental study, positive end-expiratory pressures of up to 15 cm H2O did not prevent end-expiratory lung volume decline caused by intra-abdominal hypertension. Therefore, we examined the effect of matching positive end-expiratory pressure to the intra-abdominal pressure on cardio-respiratory parameters.
DESIGN: Experimental pig model of intra-abdominal hypertension.
SETTING: Large animal facility, University of Western Australia.
SUBJECTS: Nine anesthetized, nonparalyzed, and ventilated pigs (48 ± 7 kg).
INTERVENTIONS: Four levels of intra-abdominal pressure (baseline, 12, 18, and 22 mm Hg) were generated in a randomized order by inflating an intra-abdominal balloon. At each level of intra-abdominal pressure, three levels of positive end-expiratory pressure were randomly applied with varying degrees of matching the corresponding intra-abdominal pressure: baseline positive end-expiratory pressure (= 5 cm H2O), moderate positive end-expiratory pressure (= half intra-abdominal pressure in cm H2O + 5 cm H2O), and high positive end-expiratory pressure (= intra-abdominal pressure in cm H2O). MEASUREMENTS: We measured end-expiratory lung volume, arterial oxygen levels, respiratory mechanics, and cardiac output 5 mins after each new intra-abdominal pressure and positive end-expiratory pressure setting. MAIN
RESULTS: Intra-abdominal hypertension decreased end-expiratory lung volume and PaO2 (-49% [p < .001] and -8% [p < .05], respectively, at 22 mm Hg intra-abdominal pressure compared with baseline intra-abdominal pressure) but did not change cardiac output (p = .5). At each level of intra-abdominal pressure, moderate positive end-expiratory pressure increased end-expiratory lung volume (+119% [p < .001] at 22 mm Hg intra-abdominal pressure compared with 5 cm H2O positive end-expiratory pressure) while minimally decreasing cardiac output (-8%, p < .05). High positive end-expiratory pressure further increased end-expiratory lung volume (+233% [p < .001] at 22 mm Hg intra-abdominal pressure compared with 5 cm H2O positive end-expiratory pressure) but led to a greater decrease in cardiac output (-26%, p < .05). Neither moderate nor high positive end-expiratory pressure improved PaO2 (p = .7). Intra-abdominal hypertension decreased end-expiratory transpulmonary pressure but did not alter end-inspiratory transpulmonary pressure. Intra-abdominal hypertension decreased total respiratory compliance through a decrease in chest wall compliance. Positive end-expiratory pressure decreased the respiratory compliance by reducing lung compliance.
CONCLUSIONS: In a pig model of intra-abdominal hypertension, positive end-expiratory pressure matched to intra-abdominal pressure led to a preservation of end-expiratory lung volume, but did not improve arterial oxygen tension and caused a reduction in cardiac output. Therefore, we do not recommend routine application of positive end-expiratory pressure matched to intra-abdominal pressure to prevent intra-abdominal pressure-induced end-expiratory lung volume decline in healthy lungs.

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Year:  2012        PMID: 22488004     DOI: 10.1097/CCM.0b013e31824e0e80

Source DB:  PubMed          Journal:  Crit Care Med        ISSN: 0090-3493            Impact factor:   7.598


  9 in total

1.  The duration of intra-abdominal hypertension strongly predicts outcomes for the critically ill surgical patients: a prospective observational study.

Authors:  Kyu-Hyouck Kyoung; Suk-Kyung Hong
Journal:  World J Emerg Surg       Date:  2015-05-30       Impact factor: 5.469

2.  The respiratory pressure-abdominal volume curve in a porcine model.

Authors:  Adrian Regli; Bart Leon De Keulenaer; Bhajan Singh; Lisen Emma Hockings; Bill Noffsinger; Peter Vernon van Heerden
Journal:  Intensive Care Med Exp       Date:  2017-02-28

3.  Effects of pressure support and pressure-controlled ventilation on lung damage in a model of mild extrapulmonary acute lung injury with intra-abdominal hypertension.

Authors:  Cintia L Santos; Raquel S Santos; Lillian Moraes; Cynthia S Samary; Nathane S Felix; Johnatas D Silva; Marcelo M Morales; Robert Huhle; Marcelo G Abreu; Alberto Schanaider; Pedro L Silva; Paolo Pelosi; Patricia R M Rocco
Journal:  PLoS One       Date:  2017-05-25       Impact factor: 3.240

4.  Regional Lung Recruitability During Pneumoperitoneum Depends on Chest Wall Elastance - A Mechanical and Computed Tomography Analysis in Rats.

Authors:  Lucia Comuzzi; Mariana B de Abreu; Gabriel C Motta-Ribeiro; Renata T Okuro; Thiago Barboza; Niedja Carvalho; Umberto Lucangelo; Alysson R Carvalho; Walter A Zin
Journal:  Front Physiol       Date:  2018-07-13       Impact factor: 4.566

5.  Impact of Different Positive End-Expiratory Pressures on Lung Mechanics in the Setting of Moderately Elevated Intra-Abdominal Pressure and Acute Lung Injury in a Porcine Model.

Authors:  Mascha O Fiedler; Emilis Simeliunas; B Luise Deutsch; Dovile Diktanaite; Alexander Harms; Maik Brune; Maximilian Dietrich; Florian Uhle; Markus A Weigand; Armin Kalenka
Journal:  J Clin Med       Date:  2021-01-15       Impact factor: 4.241

6.  Matching positive end-expiratory pressure to intra-abdominal pressure improves oxygenation in a porcine sick lung model of intra-abdominal hypertension.

Authors:  Adrian Regli; Rohan Mahendran; Edward T Fysh; Brigit Roberts; Bill Noffsinger; Bart L De Keulenaer; Bhajan Singh; Peter V van Heerden
Journal:  Crit Care       Date:  2012-10-26       Impact factor: 9.097

7.  Mechanical ventilation and intra-abdominal hypertension: 'Beyond Good and Evil'.

Authors:  Paolo Pelosi; Maria Vargas
Journal:  Crit Care       Date:  2012-12-18       Impact factor: 9.097

Review 8.  Chest wall effect on the monitoring of respiratory mechanics in acute respiratory distress syndrome.

Authors:  Javier Hernán Dorado; Matías Accoce; Gustavo Plotnikow
Journal:  Rev Bras Ter Intensiva       Date:  2018 Apr-Jun

9.  Effect of moderate elevated intra-abdominal pressure on lung mechanics and histological lung injury at different positive end-expiratory pressures.

Authors:  Mascha O Fiedler; B Luise Deutsch; Emilis Simeliunas; Dovile Diktanaite; Alexander Harms; Maik Brune; Florian Uhle; Markus Weigand; Thorsten Brenner; Armin Kalenka
Journal:  PLoS One       Date:  2020-04-15       Impact factor: 3.240

  9 in total

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