Literature DB >> 8986502

Pressure-limited ventilation with permissive hypercapnia and minimum PEEP in saline-lavaged rabbits allows progressive improvement in oxygenation, but does not avoid ventilator-induced lung injury.

K G Hickling1, I G Town, M Epton, A Neill, A Tie, M Whitehead, P Graham, E Everest, G A'Court, B Darlow, K Laubscher.   

Abstract

OBJECTIVE: To determine whether pressure-limited intermittent mandatory ventilation with permissive hypercapnia and positive end-expiratory pressure (PEEP) titrated to arterial oxygen tension (PaO2) prevents or reduces acute lung injury, compared to conventional ventilation, in saline-lavaged rabbits.
DESIGN: Prospective randomised trial.
SETTING: University animal laboratory.
SUBJECTS: 18 New Zealand White rabbits.
INTERVENTIONS: Following five sequential saline lung lavages, anaesthetised rabbits were randomly allocated in pairs to receive either of two ventilation protocols using intermittent mandatory ventilation. The study group had peak inspiratory pressure limited to 15 cm H2O and arterial partial pressure of carbon dioxide (PaCO2) was allowed to rise. The control group received 12 ml/kg tidal volume with rate adjusted for normocarbia. PEEP and fractional inspired oxygen (FIO2) were adjusted to maintain, PaO2 between 8 and 13.3 kPa (60 and 100 mm Hg) using a predetermined protocol. At 10 h or following death, lung lavage was repeated and lung histology evaluated.
MEASUREMENTS AND MAIN RESULTS: The mean increase in lavage cell counts and protein concentration and hyaline membrane scores were not significantly different between the groups. Oxygenation progressively improved more in the study group (p = 0.01 vs control for PaO2/FIO2 ratio and alveolar-arterial oxygen tension gradient (AaDO2)). PEEP was similar and the mean airway pressure higher in the control group, suggesting that this probably resulted from less ventilator-induced injury in the study group. Four deaths occurred in the control group (three due to pneumothorax and one to hypoxaemia) and none in the study group (p = 0.08).
CONCLUSIONS: This ventilatory protocol may have failed to prevent lung overdistension or it may have provided insufficient PEEP to prevent injury in this model; PEEP greater than the lower inflection point of the pressure-volume curve has been shown to prevent injury almost entirely.

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Mesh:

Year:  1996        PMID: 8986502     DOI: 10.1007/bf01709567

Source DB:  PubMed          Journal:  Intensive Care Med        ISSN: 0342-4642            Impact factor:   17.440


  21 in total

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Authors:  K G Hickling
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Journal:  Am Rev Respir Dis       Date:  1987-06

4.  Effect of granulocyte depletion in a ventilated surfactant-depleted lung.

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5.  High PEEP decreases hyaline membrane formation in surfactant deficient lungs.

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6.  Analysing changes in the presence of informative right censoring caused by death and withdrawal.

Authors:  M C Wu; K Bailey
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7.  Lung volume maintenance prevents lung injury during high frequency oscillatory ventilation in surfactant-deficient rabbits.

Authors:  P R McCulloch; P G Forkert; A B Froese
Journal:  Am Rev Respir Dis       Date:  1988-05

8.  In vivo lung lavage as an experimental model of the respiratory distress syndrome.

Authors:  B Lachmann; B Robertson; J Vogel
Journal:  Acta Anaesthesiol Scand       Date:  1980-06       Impact factor: 2.105

9.  A randomized comparison of total extracorporeal CO2 removal with conventional mechanical ventilation in experimental hyaline membrane disease.

Authors:  K L Dorrington; K M McRae; J P Gardaz; M S Dunnill; M K Sykes; A R Wilkinson
Journal:  Intensive Care Med       Date:  1989       Impact factor: 17.440

10.  Permissive hypercapnia in acute respiratory failure.

Authors:  A Bidani; A E Tzouanakis; V J Cardenas; J B Zwischenberger
Journal:  JAMA       Date:  1994-09-28       Impact factor: 56.272

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  1 in total

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  1 in total

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