Literature DB >> 18651323

Structural equations to model relationships between pulmonary function, fatty acids and oxidation in cystic fibrosis.

Maud Tournoud1, René Ecochard, Jean Iwaz, Jean-Paul Steghens, Gabriel Bellon, Isabelle Durieu.   

Abstract

OBJECTIVE: To illustrate the advantages of structural equation models in biomedical research using the complex example of cystic fibrosis.
MATERIAL AND METHODS: 595 blood samples from 312 patients were tested. The model studied the effects of age, BMI and clinical condition on seven major latent variables: pulmonary function, lipid oxidation status, vitamins A and E, glutathione, carotenoids, two essential fatty acids and arachidonic acid.
RESULTS: The model confirmed previous associations: positive (fatty acids, arachidonic acid, carotenoids and vitamins with pulmonary function and with lipid oxidation) and negative (glutathione with pulmonary function). It also verified the decrease in fatty acids during bronchial exacerbation and the increase in fatty acids and lipid oxidation after antibiotic treatment. Above all, the model revealed new positive associations between lipid oxidation and carotenoid levels and between lipid oxidation and vitamin A and E levels.
CONCLUSIONS: Structural equations dealt easily with the great number of outcome variables of the example. They deserve a central place in biomedical issues involving too many correlated factors to help physicians and statisticians conceive biological models that best represent reality.

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Year:  2009        PMID: 18651323     DOI: 10.1080/00365510802287265

Source DB:  PubMed          Journal:  Scand J Clin Lab Invest        ISSN: 0036-5513            Impact factor:   1.713


  1 in total

1.  Structural equation modeling for analyzing erythrocyte fatty acids in Framingham.

Authors:  James V Pottala; Gemechis D Djira; Mark A Espeland; Jun Ye; Martin G Larson; William S Harris
Journal:  Comput Math Methods Med       Date:  2014-04-15       Impact factor: 2.238

  1 in total

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