Biomedical Engineering Reference
In-Depth Information
76. Rafferty A, Clifford A, Hill R, Wood D, Samuneva B, Dimitrova-Lukacs M. Infl uence of fl uorine con-
tent in apatite mullite glass-ceramics. J Am Ceram Soc 2000; 83: 2833-2838.
77. Calver A, Hill RG, Stamboulis A. Infl uence of fl uorine content on the crystallisation behaviour of
apatite-wollastonite glass-ceramics. J Mater Sci 2004; 39: 2601-2603.
78. Yamamuro T. A/W glass-ceramic: Clinical applications. In: An Introduction to Bioceramics , Hench LL,
Wilson J (eds.), World Scientifi c, Singapore, 1993, pp. 89-103.
79. Grodd UM, Muller-Mai C, Voigt C. Ceravital bioactive glass-ceramics. In: An Introduction to Bio-
ceramics , Hench LL, Wilson J (eds.), World Scientifi c, Singapore, 1993, pp. 105-123.
80. Chen QZ, Thompson ID, Boccaccini AR. 45S5 Bioglass-derived glass-ceramic scaffolds for bone tissue
engineering. Biomaterials 2006; 27: 2414-2425.
81. Russel JL, Block JE. Clinical utility of demineralised bone matrix for osseous defects, arthrodesis,
and reconstruction: Impact of processing techniques and study methodology. Orthopaedics 1999; 22:
524-531.
82. Yaylaoglu MB, Yildiz C, Korkusuz F, Hasirci V. A novel osteochondral implant. Biomaterials 1999; 20:
1513-1520.
83. Du C, Cui FZ, Zhu XD, de Groot K. Three-dimensional nano Hap/collagen matrix loading with osteo-
genic cells in organ culture. J Biomed Mater Res 1999; 44: 407-415.
84. Brown CD, Hoffman AS. Modifi cation of natural polymer: Chitosan. In: Methods of Tissue Engineer-
ing , Atala A, Lanza RP (eds.), Academic Press, San Diego, CA, 2002, pp. 565-574.
85. Atala A, Lanza RP. Methods of Tissue Engineering . Academic Press, San Diego, CA, 2002,
pp. 505-574.
86. Badylak SE. Modifi cation of natural polymers: Collagen. In: Methods of Tissue Engineering , Atala A,
Lanza RP (eds.), Academic Press, San Diego, CA, 2002, pp. 505-514.
87. Wan ACA, Khor E, Hastings GW. Preparation of a chitin-apatite composites by in situ precipitation onto
porous chitin scaffolds. J Biomed Mater Res 1998; 41: 541-548.
88. Klokkevold PR, Vandemark L , Kenney EB, Bernard GW. Osteogenesis enhanced by chitosan (poly- n -
acetyl glucosaminoglycan) in vitro, J Periodontol 1996; 67: 1170 -1175.
89. Muzzarelli RAA, Zucchini C, Ilari P, Pugnaloni A, Belmonte MM, Biagini G, Castaldini C. Osteo-
conductive properties of methyl-pyrrolidinone chitosan in an animal model. Biomaterials 1993; 14:
925-929.
90. Middleton JC, Tipton AJ. Synthetic biodegradable polymers as orthopaedic devices. Biomaterials 2000;
21: 2335-2346.
91. Langer R, Vacanti JP, Vacanti CA, Atala A, Freed LE, Vunjak-Novakovic G. Tissue engineering bio-
medical applications. Tissue Eng 1995; 1: 151-161.
92. Bergsma E, Rosema F, Bos R, de Bruijin W. Foreign body reaction to resorbable poly(l-lactic) bone
plates and screws used for the fi xation of unstable zygomatic fractures. J Oral Maxillofacial Surg 1993;
51: 666-670.
93. Martin C, Winet H, Bao J. Acidity near eroding polylactides-polyglycolide in vitro and in vivo in rabbit
tibial bone chambers. Biomaterials 1996; 17: 2373-2380.
94. Lu LC, Mikos AG. Poly(lactic acid). In: Polymer Data Handbook . Mark JE (ed.), Oxford Press, Oxford,
1999, pp. 527-633.
95. Yang SF, Leong KF, Du ZH, Chua CK. The design of scaffolds for use in tissue engineering part I:
Traditional factors. Tissue Eng 2001; 6: 679-689.
96. Lu LC, Mikos AG. Poly(glycolic acid). In: Polymer Data Handbook . Mark JE (ed.), Oxford Press,
Oxford, 1999, pp. 566-569.
97. Ramakrishna S, Huang ZM, Kumar GV, Batchelor AW, Mayer J. An Introduction to Biocomposites.
Imperial College Press, London, 2004, p. 36.
98. Iroh JO. Poly( ε -caprolactone). In: Polymer Data Handbook. Mark JE (ed.), Oxford Press, Oxford, 1999,
pp. 361-362.
99. Yoda N. Synthesis of polyanhydrides II: New aromatic polyanhydrides with high melting points and
fi bre-forming properties. Die Markromolekulare Chemie 2003; 32: 1-12.
100. Kellomak M, Heller J, Tormala P. Processing and properties of two different poly(ortho esters). J Mater
Sci Mater Med 2000; 11: 345-355.
101. Magill JH. Poly(phosphazenes), bioerodible. In: Polymer Data Handbook. Mark JE (ed.), Oxford Press,
Oxford, 1999, pp. 746-749.
102. Laurencin CT, Lakshmi S. Polyphosphazene nanofi bers for biomedical applications: Preliminary studies.
In: Proceedings of NATOASI Conference 2003 , September 1-12, 2003, Antalya, Turkey, pp. 281-300.
Search WWH ::




Custom Search