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Utilization of the lower inflection point of the pressure-volume curve results in protective conventional ventilation comparable to high frequency oscillatory ventilation in an animal model of acute respiratory distress syndrome
Rossi, Felipe S; Mascaretti, Renata Suman; Haddad, Luciana B; Freddi, Norberto A; Mauad, Thais; Rebello, Celso M.
  • Rossi, Felipe S; São Paulo University. Medical School. Department of Pediatrics. Experimental Research Unit. São Paulo. BR
  • Mascaretti, Renata Suman; São Paulo University. Medical School. Department of Pediatrics. Experimental Research Unit. São Paulo. BR
  • Haddad, Luciana B; São Paulo University. Medical School. Department of Pediatrics. Experimental Research Unit. São Paulo. BR
  • Freddi, Norberto A; São Paulo University. Medical School. Department of Pediatrics. Experimental Research Unit. São Paulo. BR
  • Mauad, Thais; São Paulo University. Medical School. Department of Pathology. São Paulo. BR
  • Rebello, Celso M; São Paulo University. Medical School. Department of Pediatrics. Experimental Research Unit. São Paulo. BR
Clinics ; 63(2): 237-244, 2008. graf, tab
Artigo em Inglês | LILACS | ID: lil-481054
ABSTRACT

INTRODUCTION:

Studies comparing high frequency oscillatory and conventional ventilation in acute respiratory distress syndrome have used low values of positive end-expiratory pressure and identified a need for better recruitment and pulmonary stability with high frequency.

OBJECTIVE:

To compare conventional and high frequency ventilation using the lower inflection point of the pressure-volume curve as the determinant of positive end-expiratory pressure to obtain similar levels of recruitment and alveolar stability.

METHODS:

After lung lavage of adult rabbits and lower inflection point determination, two groups were randomized conventional (positive end-expiratory pressure = lower inflection point; tidal volume=6 ml/kg) and high frequency ventilation (mean airway pressures= lower inflection point +4 cmH2O). Blood gas and hemodynamic data were recorded over 4 h. After sacrifice, protein analysis from lung lavage and histologic evaluation were performed.

RESULTS:

The oxygenation parameters, protein and histological data were similar, except for the fact that significantly more normal alveoli were observed upon protective ventilation. High frequency ventilation led to lower PaCO2 levels.

DISCUSSION:

Determination of the lower inflection point of the pressure-volume curve is important for setting the minimum end expiratory pressure needed to keep the airways opened. This is useful when comparing different strategies to treat severe respiratory insufficiency, optimizing conventional ventilation, improving oxygenation and reducing lung injury.

CONCLUSIONS:

Utilization of the lower inflection point of the pressure-volume curve in the ventilation strategies considered in this study resulted in comparable efficacy with regards to oxygenation and hemodynamics, a high PaCO2 level and a lower pH. In addition, a greater number of normal alveoli were found after protective conventional ventilation in an animal model of acute respiratory distress syndrome.
Assuntos

Texto completo: DisponíveL Índice: LILACS (Américas) Assunto principal: Síndrome do Desconforto Respiratório / Ventilação de Alta Frequência / Respiração com Pressão Positiva / Modelos Animais de Doenças Tipo de estudo: Estudo prognóstico Limite: Animais Idioma: Inglês Revista: Clinics Assunto da revista: Medicina Ano de publicação: 2008 Tipo de documento: Artigo País de afiliação: Brasil Instituição/País de afiliação: São Paulo University/BR

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Texto completo: DisponíveL Índice: LILACS (Américas) Assunto principal: Síndrome do Desconforto Respiratório / Ventilação de Alta Frequência / Respiração com Pressão Positiva / Modelos Animais de Doenças Tipo de estudo: Estudo prognóstico Limite: Animais Idioma: Inglês Revista: Clinics Assunto da revista: Medicina Ano de publicação: 2008 Tipo de documento: Artigo País de afiliação: Brasil Instituição/País de afiliação: São Paulo University/BR