Biomedical Engineering Reference
In-Depth Information
70. K. St. John , “ Applications of advanced composites in orthopedic implants , ” in
M. Szycher , Biocompatible polymers, metals and composites . Lancaster : Technomic
Publishing , 861 ( 1983 ).
71. P. Christel , A. Meunier , S. Leclercq , P. Bouquet and B. Buttazzoni , “ Devolopement of
carbon-carbon hip prostheses,” J. Biomed. Mater. Res. Appl. Biomet., 21 191 ( 1987 ).
72. M. Akay and N. Aslan , “ Numerical and experimental stress analysis of a polymeric
composite hip joint prostheses,” J. Biomed. Mater. Res., 31 167 ( 1996 ).
73. T. Peter , R. Tognini , J. Mayer and E. Wintermantel , “ Homoelastic, anisotropic os-
teosynthesis system by net-shape processing of endless carbon fi ber reinforced poly-
etheretherketone (PEEK) , ” in J. Goh , A. Nather , Proc. of 9 th conference on bio-
medical engineering , Singapore , National University of Singapore , 317 ( 1997 ).
74. E. Wintermantel , A. Bruinink , K. Ruffi ex , M. Petitmermet and J. Mayer , “ Tissue engi-
neering supported with structured biocompatible materials: goals and achievements,”
in M. Speidal , Uggowitzer, Materials in medicine , Switzerland : ETH zurich , 1 ( 1998 ).
75. W. Bonefi eld , “ Composites for bone replacement , ” J. Biomed. Eng. , 10 522 ( 1998 ).
76. B. Moyen , P. Lahey , E. Weinberg and W. Harris , “ Effects on intact femora of dogs of
the application and removal of metal plates,” J. Bone Joint Sur., 60A [7] 940 ( 1978 ).
77. S. Ramakrishna , J. Mayer , E. Wintermantel and K. W. Leong , “ Biomedical applica-
tions of polymer - composite materials: a review , ” Compos. Sci. Technol. , 61 [9]
1189 - 224 ( 2001 ).
78. M. Wang , S. Deb and W. Bonfi eld , “ Chemically coupled hydroxyapatite - polyethylene
composites: processing and characterization, ” Mat. Letters , 44 [2] 119 - 24 ( 2000 ).
79. M. Wang and W. Bonefi eld , “ Chemically coupled hydroxyapatite - polyethylene
composite: structure and properties , ” Biomaterials , 22 1311 ( 2001 ).
80. L. D. Silvio , M. J. Dalby and W. Bonfi eld , “ Osteoblast behaviour on HA/PE compos-
ite surfaces with different HA volumes,” Biomaterials, 23 [1] 101 - 7 ( 2002 ).
81. W. Bonefi eld, “Hydroxyapatite reinforced polyethylene as an analogous material for
bone replacement, ” Am. Acad. Sci. , 523 173 ( 1988 ).
82. M. Wang , R. Joseph and W. Bonefi eld , “ Hydroxyapatite - polyethylene composites
for bone substitution: effects of ceramic particle size and morphology,” Biomaterials,
19 2357 ( 1998 ).
83. M. Wang , M. Chandrasekaran and W. Bonefeild , “ Friction and wear of hydroxyapa-
tite reinforced high density polyethylene against the stainless steel counterface,” J.
Mater. Sc. Mater. Med., 13 607 ( 2004 ).
84. R. Rothon , Particulate - fi lled polymer composites, Longman Scientifi c and Technical,
New Work , 294 ( 1995 ).
85. A. Y. Sadi , S. S. Homaeigohar , A. R. Khavandi and J. Javadpour , “ The effect of par-
tially stabilized zirconia on the mechanical properties of the hydroxyapatite- polyeth-
ylene composites,” J. Mater. Sc. Mater. Med., 15 853 ( 2004 ).
86. Y. M. Kong , S. Kim and H. E. Kim , “ Reinforcement of hydroxyapatite bioceramic by
addition of ZrO 2 coated with Al 2 O 3 , ” J. Am. Ceram. Soc. , 82 [11] 2963 ( 1999 ).
87. J. R. Sarasua and P. M. Remiru , “ The mechanical behaviour of PEEK short fi ber
composites , ” J. Mater. Sci. , 30 3501 - 8 ( 1995 ).
88. M. S. A. Bakar , P. Cheang and K. A. Khor , “ Mechanical properties of injection mold-
ed hydroxyapatite- Polyetheretherketone biocomposites , ” Compo. Sci. Technol. , 63
421 - 5 ( 2003 ).
Search WWH ::




Custom Search