By Jonathan Black
Normal CONSIDERATIONSBiocompatibility: Definitions and matters advent organic functionality Consensus Definitions dialogue The self-discipline of Biomaterials Afterword: Paradigmatic Shift creation to the organic surroundings basic issues comparability of exterior and inner ConditionsProblems in Definition of the organic EnvironmentElements of the organic setting Implant lifestyles History Preimplantation dealing with results fabric reaction: functionality ANDDEGRADATION OF MATERIALSIN VIVOSwelling and Leaching creation Fick's legislation of DiffusionAbsorption Examples of Undesi. Read more...
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Additional resources for Biological Performance of Materials : Fundamentals of Biocompatibility
2002) and/or during subsequent preimplantation storage (Edidin et al. 2002). This might be interpreted, in error, as a material response effect if it is detected after implantation, or it might produce changes in host response secondary to the changes in the materials’ properties (Stanford et al. 1994). It is also possible for traces of liquid or gaseous sterilants to be carried into the implant site, thus modifying the host response. 2). Therefore, in any examination of material and host responses to implanted materials, it is necessary to pay close attention to actual surface conditions and sterilization effects as a prologue to exposure to the biological environment.
Et al. ), Encyclopedic Handbook of Biomaterials and Bioengineering, Part A: Materials, Vol. 1, Marcel Dekker, New York, 223, 1995. A. , New challenges in biomaterials, Science, 264, 25 March 1994, 1715. 1 General Considerations The central idea developed in the previous chapter is that biological performance should be defined in terms of interaction between materials and their operational setting, the biological environment. This is not qualitatively different from the normal consideration given to the material aspects of performance and durability during any engineering design process.
Champaign, IL, 2003. E. , Radiofrequency gas plasma (glow discharge) disinfection of dental operative instruments, including handpieces, J. , 18(3), 236, 1992. S. , Lippincott, Williams & Wilkins, Philadelphia, 2000. , Biomedical Engineering Principles, Marcel Dekker, New York, 1976. , McGraw–Hill, New York, 2003. L. and Kereluk, K. ), Sterilization of Medical Products, Johnson & Johnson, New Brunswick, NJ, 1977. M. , Advances in the processing, sterilization, and crosslinking of ultrahigh molecular weight polyethylene for total joint arthroplasty, Biomaterials, 20, 1659, 1999.