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The hip joint alloplasty is one of the surgical treatments often performed in clinics and in traumaorthopaedic departments of hospitals. The popular method for connecting pelvis and femoral component with a bone during alloplasty is the use of a thin surgical cement layer. During a surgery, thermal properties of the cement, e.g., high polymerization temperature, appear to be harmful. The understanding of thermodynamic phenomena occurring during polymerization process is necessary to limit harmful cement influence on human body. Thus the description of the heat release due to chemical reactions is especially important. The paper deals mainly with the description of the heat source and temperature field in the surgical cement layer. Characteristics of the heat source in the cement were described. The temperature distributions in the cement layers at different values of thermal diffusivity coefficient were presented.
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Tom
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135--142
Opis fizyczny
Bibliogr. 11 poz., rys., wykr.
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autor
autor
autor
- Silesian University of Technology, Department of Mechanics of Materials
Bibliografia
- [1] BALIN A., Właściwości biomateriałów stosowanych jako wypełniacze w chirurgii kostnej, Annales Academiae Medicae Silesiensis, Supl. 29, Katowice, 1999, Materiały II Sympozjum Biomechanika w implantologii. Ustroń–Jaszowiec, 1999, pp. 9–16.
- [2] HUISKES R., Some fundamental aspects of human joint replacement, Acta Orthopedica Scandinavica, Supl., No. 185, Copenhagen, 1980.
- [3] MARCINIAK J., Biomateriały, Wydawnictwo Politechniki Śląskiej, Gliwice, 2002.
- [4] ŁUKASZCZYK J., Polimerowe i kompozytowe cementy kostne oraz materiały pokrewne, Cz. I. Klasyczne cementy metakrylanowe i ich modyfikacja, Polimery, 2004, 44, 2, pp. 79–88.
- [5] KOZŁOWSKA A., Badania warunków polimeryzacji mas akrylowych jako implantów, Polimery w Medycynie, 1997, t. 7, 3, pp. 137–177.
- [6] OKRAJNI J., BALIN A., Estimation of the ceramic admixture influence on the polymerization temperature of surgical cement, VII International Conference Medical Informatics and Technologies, Journal of Medical Informatics and Technologies, 2003, Vol. 6, published by Dept. of Computer Systems, University of Silesia, pp. IT-127–135.
- [7] VALLO C.I., Theoretical prediction and experimental determination of the effect of mold characteristics on temperature and monomer conversion fraction profiles during polymerisation of a PMMA-based bone cement, J. Biomed. Mater. Res., 2002, 63(5), pp. 627–642.
- [8] BALIN A., Materiałowo uwarunkowane procesy adaptacyjne i trwałość cementów stosowanych w chirurgii kostnej, Wydawnictwo Politechniki Śląskiej, Gliwice, 2004.
- [9] ASHBY M.F., Dobór materiałów w projektowaniu inżynierskim, Wydawnictwo Naukowo-Techniczne, Warszawa, 1998.
- [10] MAZULLO S., PAOLINI M., VERDI C., Numerical simulation of thermal bone necrosis during cementation of femoral prostheses, J. Math. Biol., 1991, 29(5), pp. 475–494.
- [11] STAŃCZYK M., TELEGA J.J., Thermal problems in artificial joints: influence of bone cement polymerization, Acta Bioengng. Biomech., 2001, 3, (Suppl. 2), 4, pp. 89–496.
Typ dokumentu
Bibliografia
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bwmeta1.element.baztech-article-BPB1-0028-0066