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79:. In this case a combination of barrier membranes, bone tacks, and supplemental autogenous bone may be required to promote proper osseointegration. In addition, implant surface modification has been studied and now integrated, thus promoting an optimal tissue-implant interface (i.e. osseointegration, implant-gingival seal).
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E.T. den Braber, H.V. Jansen, M.J. de Boer, H.J.E. Croes, M. Elwenspoek, and J.A. Jansen, Scanning electron microscopic, transmission electron microscopic, and confocal laser scanning microscopic observation of fibroblasts cultured on microgrooved surfaces of bulk titanium substrata, J. Biomed.
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F. Rupp, L. Scheideler, N. Olshanska, M. de Wild, M. Wieland, J. Geis-Gerstorfer. Enhancing surface free energy and hydrophilicity through chemical modification of microstructured titanium implant surfaces. J. Biomed. Mater. Res. A. 2006, 323–33
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Branemark PI. "Introduction to osseointegration". In
Branemark PI, Zarb GA, and Albrektsson T. eds.: Tissue-Integrated Prosthese. Osseointegration in Clinical Dentistry. Chicago, IL: Quintessence Publishing Co, Inc.: 1985, p.
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Branemark PI. "Introduction to osseointegration". In
Branemark PI, Zarb GA, and Albrektsson T. eds.: Tissue-Integrated Prosthese. Osseointegration in Clinical Dentistry. Chicago, IL: Quintessence Publishing Co, Inc.: 1985, p.
62:, they osseointegrate. Porous implantable materials are designed for bone to grow not only onto the material but also into its pores, and in some cases interconnecting within the material’s structure, in a process called
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In some cases, the patient has periodontal defects (damaged or poor bone structure) which hinder osseointegration. Guided tissue and/or bone regeneration may be necessary before the bone can osseointegrate with the
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Unger, AS. "Evaluation of a porous tantalum uncemented actetabular cup in revision total hip arthoplasty. Clinical and radiological results of 60 hips". J Arthroplasty, 2005, p 1002-1009
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Unger, AS. "Evaluation of a porous tantalum uncemented actetabular cup in revision total hip arthoplasty. Clinical and radiological results of 60 hips". J Arthroplasty, 2005, p 1002-1009
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S. Raghavendra, M. C. Wood, T. D. Taylor. Early wound healing adjacent to endosseous dental implants: A review of the literature. Int. J. Oral
Maxillofac. Implants., 2005, 425–31
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Tsao AK. "Biomechanical and clinical evaluations of a porous tantaluym implant for the treatment of early-stage osteonecrosis". J Bone Joint Surg, 2005, p.22-27
38:, porous implantable materials used in the orthopedic and dental implant industries offer the potential for ingrowth as well as ongrowth or osseoincorporation.
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58:, as "the direct structural and functional connection between ordered, living bone and the surface of a load-carrying implant." In the case of
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Bobyn JD. "Clinical validation of a structural porous tantalum biomaterial for adult reconstruction". J Bone Joint Surg, 2004, p. 123-129
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Bobyn JD. "UHMWPE: the good, bad, & ugly. Fixation and bearing surfaces for the next millennium". Orthop, 1999, p. 810-812
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Bobyn JD. "UHMWPE: the good, bad, & ugly. Fixation and bearing surfaces for the next millennium". Orthop, 1999, p. 810-812
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Conventional textured or coated implant surfaces are designed to achieve bone-to-implant contact, which is called
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Cohen R. "A porous tantalum trabedcular metal: basic science". Am J Orthrop, 2002, p. 216-217
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Cohen R. "A porous tantalum trabedcular metal: basic science". Am J Orthrop, 2002, p. 216-217
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Osseointegration Study, Journal of Oral
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