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P. Ducheyne, T. Kokubo, and C. A. van Blitterswijk (eds.), Reed Healthcare Communications, Leidendorp, The Netherlands
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2
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0028447265
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Abundant postoperative calcification of an elastomer matrix, calcium phosphate-polymer composite for bone reconstruction: A preliminary study
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A. M. Radder and C. A. van Blitterswijk, "Abundant postoperative calcification of an elastomer matrix, calcium phosphate-polymer composite for bone reconstruction: A preliminary study," J. Mater. Sci. Mater. Med., 5, 320-331 (1994).
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0028447603
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Applying a calcium phosphate layer on PEG/PBT copolymer affects bone formation in vivo
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M. L. Gailard, J. van den Brink, C. A. van Blitterswijk, and Z. B. Luklinska, "Applying a calcium phosphate layer on PEG/PBT copolymer affects bone formation in vivo," J. Mater. Sci. Mater. Med., 5, 424-428 (1994).
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0002152488
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Hydroxyapatite-reinforced polyethylene composite for bone replacement
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P. Ducheyne, G. van der Perre, and A. E. Aubert (eds.), Elsevier Science Publishers, Amsterdam
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W. Bonfield, J. C. Bihiri, C. Doyle, J. Bowman, and J. Abram, "Hydroxyapatite-reinforced polyethylene composite for bone replacement," in Biomaterials and Biomechanics, P. Ducheyne, G. van der Perre, and A. E. Aubert (eds.), Elsevier Science Publishers, Amsterdam, 1983, pp. 421-426.
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The structure of the interface developed between biomaterials
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G. Heimke, U. Soltesz, and A. J. C. Lee (eds.), Elsevier Science Publishers, Amsterdam
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K. E. Tanner, C. Doyle, and W. Bonfield, "The structure of the interface developed between biomaterials," in Clinic Implant Materials: Advances in Biomaterials, Vol. 9, G. Heimke, U. Soltesz, and A. J. C. Lee (eds.), Elsevier Science Publishers, Amsterdam, 1990, pp. 149-154.
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C. Doyle, K. E. Tanner, and W. Bonfield, "In vitro and in vivo evaluation of polyhydroxybutyrate and of polyhydroxybutyrate reinforced with hydroxyapatite," Biomaterials, 12, 841-847 (1991).
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Resorbable hydroxyapatite-reinforced poly(L-lactide) composites with bone-bonding ability
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P. Ducheyne, T. Kokubo, and C. A. van Blitterswijk (eds.), Reed Healthcare Communications, Leidendorp, The Netherlands
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C. C. P. M. Verheyen, J. R. de Wijn, C. A. van Blitterswijk, P. M. Rozing, and K. de Groot, "Resorbable hydroxyapatite-reinforced poly(L-lactide) composites with bone-bonding ability," in Bone-Bonding Biomaterials, P. Ducheyne, T. Kokubo, and C. A. van Blitterswijk (eds.), Reed Healthcare Communications, Leidendorp, The Netherlands, 1992, pp. 153-171.
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Novel hydroxyapatite-based dental composites
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9
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0542387140
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Mechanical properties of hydroxyapatite-polymethylmethacrylate bone cement composite: Hydroxyapatite embedded on surfaces and throughout cement matrix
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P. Ducheyne and D. Christiansen (eds), Butterworth-Heinemann, Ltd., Oxford
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R. F. Low, S. F. Hulbert, and A. Sogal, "Mechanical properties of hydroxyapatite-polymethylmethacrylate bone cement composite: Hydroxyapatite embedded on surfaces and throughout cement matrix," in Bioceramics, Vol. 6, P. Ducheyne and D. Christiansen (eds), Butterworth-Heinemann, Ltd., Oxford, 1993, pp. 339-344.
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Low, R.F.1
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Advanced bone cement for long-term orthopaedic implantations
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W. Bonfield, G. W. Hastings, and K. E. Tanner (eds.)
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J. C. Behiri, M. Braden, S. Khorasani, D. Wiwattanadate, and W. Bonfield, "Advanced bone cement for long-term orthopaedic implantations," in Bioceramics, Vol. 4, W. Bonfield, G. W. Hastings, and K. E. Tanner (eds.), 1991, pp. 301-307.
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11
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Characterization of silane-treated hydroxyapatite powders for use as filler in biodegradable composites
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A. M. P. Dupraz, J. R. de Wijn, S. A. T. van de Meer, and K. de Groot, "Characterization of silane-treated hydroxyapatite powders for use as filler in biodegradable composites," J. Biomed. Mater. Res., 30, 231-238 (1996).
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Characterization of experimental composite biomaterials
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D. W. Jones and A. S. Rizkalla, "Characterization of experimental composite biomaterials," J. Biomed. Mater. Res., Appl Biomater., 33, 89-100 (1996).
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S. Deb, M. Wang, K. E. Tanner, and W. Bonfield, "Hydroxyapatite-polyethylene composites: Effect of grafting and surface treatment of hydroxyapatite," J. Mater. Sci. Mater. Med., 7, 191-193 (1996)
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T. Yamamura, T. Kokubo, and T. Nakamura (eds.), Kobunshi Kankokai, Kyoto
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S. N. Khorasani, S Deb, J. C. Behiri, M. Braden, and W. Bonfield, "Modified hydroxyapatite-reinforced PEMA bone cement," in Bioceramics, Vol. 5, T. Yamamura, T. Kokubo, and T. Nakamura (eds.), Kobunshi Kankokai, Kyoto, 1992, pp. 225-232.
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Nano-apatite/polymer composites. II. Surface modification of nano-apatite by grafting organic polymer
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Toronto
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Q. Liu, J. de Wijn, and C. A. van Blitterswijk, "Nano-apatite/polymer composites. II. Surface modification of nano-apatite by grafting organic polymer," [Abstract], in Transactions of 5th World Biomaterials Congress, Toronto, 1996, p. 11-443.
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Grafting PMMA on hydroxyapatite powder particles using isocyanateoethyl methacrylate
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Toronto
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J. R. de Wijn, Q. Liu, and C. A. van Blitterswijk, "Grafting PMMA on hydroxyapatite powder particles using isocyanateoethyl methacrylate," [Abstract], in Transactions of 5th World Biomaterials Congress, Toronto, 1996, p. I-633.
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Q. Liu, J. de Wijn, and C. A. van Blitterswijk, "Covalent bonding of PMMA, PBMA, and poly(HEMA) to hydroxyapatite particles," J. Biomed. Mater. Res., 40, 257-263 (1998).
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Shape change and phase transition of needle-like non-stochiometric apatite crystals
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Y. Li, C. P. A. T. Klein, J. de Wijn, S. van de Meer, K. de Groot, "Shape change and phase transition of needle-like non-stochiometric apatite crystals." J. Mater. Sci. Mater. Med., 5, 263-268 (1994).
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Y. Li, J. de Wijn, C. P. A. T. Klein, S. van de Meer, and K. de Groot, "Preparation and characterization of nano-grade osteoapatite-like rod crystals," J. Mater. Sci. Mater. Med., 5, 252-255 (1994).
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Toronto
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Q. Liu, J. de Wijn, C. A. van Blitterswijk, "Nano-apatite/ polymer composites. I. Mechanical and physicochemical characteristics," [Abstract], in Transactions of 5th World Biomaterials Congress, Toronto, 1996, p. II-361.
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