Phosphatidylcholine composition of endotracheal tube aspirates of neonates and subsequent respiratory disease.

Author:

Ashton M R,Postle A D,Hall M A,Smith S L,Kelly F J,Normand I C

Publisher

BMJ

Subject

Pediatrics, Perinatology and Child Health

Reference14 articles.

1. Effect of substitution on lung effluent phospholipids in respiratory distress syndrome: evaluation of surfactant phospholipid turnover, pool size, and the relationship to severity of respiratory failure;Hallman, M.; Merritt, T.A.; Pohiavuori, M.; Gluck, L.;Pediatr Res,1986

2. Lung phospholipids of the human fetus and infants with and without hyaline membrane disease;Adams, F.H.; Fujiwara, T.; Emmanonidides, G.C.; Raiha, N.;7 Pediatr,1970

3. Developmental variation in whole human lung phosphatidylcholine molecular species: a comparison with guinea-pig and rat;Hunt, A.N.; Kelly, F.J.; Postle, A.D.;Early Hum Dev,1991

4. Method for the sensitive analysis of individual molecular species of phosphatidylcholine by high performance liquid chromatography using post-column fluorescence detection;Postle, A.D.;J Chromatogr,1987

5. Individual molecular species of phosphatidylcholine from fetal and neonatal lung;Hunt, A.N.; Hall, M.A.; Kelly, F.J.; Normand, I.C.S.; Postle, A.D.;Progress in Respiratory Research,1990

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