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Assessment of physical properties of macromolecules used in pharmacy using genetic algorithm

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Konferencja
Third International Conference on Engineering Rheology, ICER 2005
Języki publikacji
EN
Abstrakty
EN
Macromolecular compounds have found increasing use in pharmaceutical practice as auxiliaries, in the technology of drug form as well as in the therapeutic systems with controlled release of therapeutic substances. In order to make a full use of the experimental data the system is described by mathematical rheological models by Szulman, Casson, Tscheuschmer, In the research, the values of the rheological parameters have been described by a genetic algorithm and compared with solver software (part of Microsoft Excel from the Office packet).
Rocznik
Strony
165--173
Opis fizyczny
Bibliogr. 15 poz., tab., wykr.
Twórcy
autor
  • Department of Inorganic and Analytical Chemistry, K. Marcinkowski University of Medical Sciences Grunwaldzka 6, 60-780 Poznań, POLAND
autor
  • Department of Inorganic and Analytical Chemistry, K. Marcinkowski University of Medical Sciences Grunwaldzka 6, 60-780 Poznań, POLAND
Bibliografia
  • [1] Franco J.M. (1999): Rheology of food, cosmetics and pharmaceuticals. - J. Colloid Interface Sci., vol.4, No.288.
  • [2] Franco JM. (2001): Wall slip phenomena in oil-in-water emulsions: Effect of some structural parameters. - J. Colloid Sci., vol.24, No.226.
  • [3] Goldberg D. (1995): Genetic Algorithms and their using (in Polish). - Warszawa: W.N.T.
  • [4] Górecki M., Zalewska A. (2001): Assessment of physical properties of macromolecules used in pharmacy using mathematical models. - Polish J. Med. Phys. Eng., vol.7, No.l 17.
  • [5] Górecki M., Zalewska A. (2001): Rheometric analysis of physical stability of o/w type emulsion. - Polish J. Med. Phys. Eng., vol.7, No.317.
  • [6] Mason T.G. (1999): New fundamental concepts in emulsion rheology. - Coll. Int. Sci., vol.4, No.231.
  • [7] Nabil E. (2001): Rheological properties of high concentration of carboxymethylcellulose solutions. - J. App. Polym. ScL.vol.79, No. 1787.
  • [8] Rajinder P. (2000): Viscosity-concentaration equation for emulsions of naearly spherical droplets. - J. Coll. Int. Sci., 1, No.168.
  • [9] Rajinder P.: Linear viscoelastic behavior of multiphase dispersion. - J. Coll. Int. Sci., vol.232, No.50.
  • [10] Riberio C.P., Cario Andrade M.M. (2002): An algorithm of steady - state silmulation of plate heat exchanges. - X Food Eng., vol.53, No.l.
  • [11] Rutkowska D., Pilinski M. (1997): Neuron Networks, Genetic Algorithms and Fuzzy Systems (in Polish). - Warszawa: W.N. PWN.
  • [12] Sierou A., Brady J.F. (2004): Shear-iduced self diffussion in non-colloidal suspension. - J. F. Mech., vol.506, No.314.
  • [13] Solomon M., Lu Qiang (2001): Rheology and dynamic of particles in viscoleastic media. Current opinion in coll. - Ibl Sci., vol.6, No.61.
  • [14] Stokes J.R. (2001): Phase-separated biopolymer mixture rheology: Prediction using a viscoelastic emulsion model. - Rheol., vol.45, No.l 173.
  • [15] Tuncay K., Ortoleva P. (2004): Quantitative basin modeling: present state and future developments towards predictability. - Geofluids, vol.4, No.39.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ2-0015-0047
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