Identyfikatory
Warianty tytułu
Analiza numeryczna zabiegu sztucznej hipertermii
Języki publikacji
Abstrakty
This paper presents numerical modelling of artificial hyperthermia treatment. Presented model takes into account not only the temperature distributions but also the thermal dose parameter. Obtaining of temperature distributions takes advantage of the generalized dual phase lag equation. For computer calculations the parallelized algorithm was prepared.
Artykuł dotyczy numerycznego modelowania zabiegu sztucznej hipertermii. Analiza skuteczności zabiegu jest rozpatrywana nie tylko na podstawie czasoprzestrzennych rozkładów temperatury, ale także w oparciu o parametr dawki termicznej. Do modelowania przepływu ciepła w rozpatrywanym obszarze wykorzystano uogólnione równanie z dwoma czasami opóźnień. Na potrzeby obliczeń numerycznych napisano autorski program oparty o obliczenia równoległe.
Rocznik
Tom
Strony
48--53
Opis fizyczny
Bibliogr. 14 poz., rys., tab.
Twórcy
autor
- Silesian University of Technology, Institute of Computational Mechanics and Engineering
autor
- Silesian University of Technology, Institute of Computational Mechanics and Engineering
Bibliografia
- [1] Afrin N., Zhang Y., Chen J.K.: Thermal lagging in living biological tissue based on nonequilibrium heat transfer between tissue, arterial and venous bloods, International Journal of Heat and Mass Transfer, 2011, 54, pp. 2419–2426.
- [2] Cattaneo C.: A form of heat conduction equation which eliminates the paradox of instantaneous propagation, Comp. Rend., 1958, 247, pp. 431-433.
- [3] Ciesielski M.: Mochnacki B., Numerical analysis of interactions between skin surface temperature and burn wound shape, Scientific Research of Institute of Mathematics and Computer Science, 2012, 1(11), pp. 15-22.
- [4] Khaled A.R.A., Vafai K.: The role of porous media in modeling flow and heat transfer in biological tissues, International Journal of Heat and Mass Transfer, 2003, 46, pp. 4989–5003.
- [5] Kirk D.B., Wen-mei W. Hwu: Programming Massively Parallel Processors, Second Edition: A Hands-on Approach, Morgan Kaufmann, 2012.
- [6] Majchrzak E.: Numerical modelling of bio-heat transfer using the boundary element method, Journal of Theoretical and Applied Mechanics, 1998, 2(36), pp. 437-455.
- [7] Majchrzak E.: Mochnacki B.: Numerical methods. Theoretical bases, practical aspects and algorithms, Publ. of the Silesian University of Technology, Gliwice, Poland, 2004.
- [8] Majchrzak E., Poteralska J.: Turchan Ł,: Comparison of different bioheat transfer models used in numerical modelling of a hyperthermia therapy, International Conference of the Polish Society of Biomechanics “Biomechanics 2010”, Book of Abstracts, Warsaw, Poland, 2010, pp. 137-138.
- [9] Majchrzak E., Turchan L.: Numerical modeling of a hyperthermia therapy using dual-phase-lag model of bioheat transfer, 19th International Conference on Computer Methods in Mechanics CMM 2011, Short Papers, Warsaw, Poland, 2011, pp. 337-338.
- [10] Minkowycz, W.J., Haji-Sheikh, A., Vafai, K.: On departure from local thermal equilibrium in porous media due to a rapidly changing heat source: the Sparrow number, Int. J. Heat Mass Transfer, 42, 1999, pp. 3373-3385.
- [11] Nakayama A., Kuwahara F.: A general bioheat transfer model based on the theory of porous media, International Journal of Heat and Mass Transfer, 51, 2008, pp. 3190–3199.
- [12] Peng T., O’Neill D.P., Payne S.J.: A two-equation coupled system for determination of liver tissue temperature during thermal ablation, International Journal of Heat and Mass Transfer, 54, 2011, pp. 2100-2109.
- [13] Wen-mei W. Hwu: GPU Computing Gems Emerald Edition, Morgan Kaufmann, 2011.
- [14] Yuan, P.: Numerical analysis of temperature and thermal dose response of biological tissues to thermal non-equilibrium during hyperthermia therapy– Medical Engineering & Physics, 2008, 20, pp. 135-143.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0a0a99d3-788e-4938-8af3-32d93905b963