Literature DB >> 3923874

Evaluation of the gas transfer characteristics of porous copolyurethane oxygenator membranes.

P M Knight, D J Lyman.   

Abstract

Porous copolyurethane membranes were prepared by solvent casting thin polymer films onto fibrous substrates. Pore size, water filtration rates, and gas transmission rates were measured to determine the influence of substrate, polymer type, and coating thickness on the membrane properties in the dry and wet state. Cellulosic substrates were not as satisfactory as were polyethylene, polyester, or nylon substrates. Porous membranes formed on these latter substrates had gas transfer rates similar to silicone rubber membranes. Although O2 transfer was similar to Gore-Tex and Celgard, CO2 transfer was less, apparently due to fewer pores in the copolyurethane membranes and possible wetting of the pores by water.

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Year:  1985        PMID: 3923874     DOI: 10.1007/bf02371248

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  6 in total

1.  Platelet adhesion to solid surfaces. The effects of plasma proteins and substrate wettability.

Authors:  S K Chang; O S Hum; M A Moscarello; A W Neumann; W Zingg; M J Leutheusser; B Ruegsegger
Journal:  Med Prog Technol       Date:  1977-09-29

2.  Comparison of gaseous transfers through synthetic membranes for oxygenators.

Authors:  A Lautier; P Rey; J Bizot; A Faure; A Sausse; D Laurent
Journal:  Trans Am Soc Artif Intern Organs       Date:  1969

3.  Nomograms for correction of blood Po2, Pco2, pH, and base excess for time and temperature.

Authors:  G R Kelman; J F Nunn
Journal:  J Appl Physiol       Date:  1966-09       Impact factor: 3.531

4.  Limiting models for the transfer of CO2 and O2 in membrane oxygenators.

Authors:  W J Dorson; M Voorhees
Journal:  Trans Am Soc Artif Intern Organs       Date:  1974

5.  The interaction of plasma proteins with polymers. I. Relationship between polymer surface energy and protein adsorption/desorption.

Authors:  A Baszkin; D J Lyman
Journal:  J Biomed Mater Res       Date:  1980-07

6.  Digital computer procedure for the conversion of PCO2 into blood CO2 content.

Authors:  G R Kelman
Journal:  Respir Physiol       Date:  1967-08
  6 in total

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