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Journal of Biomedical Materials Research (Applied Biomaterials) Author Index— Volume 69 Ahnfelt, N.-O. See Engqvist, H., 94 Eberhart, R. C. See Zilberman, M., | Jayakumar, R. See Rafiuddin Ahmed, M., 241 Anderegg, J. See Shabalovskaya, S., 223 Engqvist, H. Jiang, D. See Huang, X., 70 Anderson, G. I. See MacQuarrie, R. A., 104 ; L66f, J.; Upperstrém, S.; Phaneuf, M. W.:; Jonsson, J. C. See Engqvist, H., 94 Atsuta, M. See Baba, N.. 121 Jonsson, J. C.; Hermansson, L.; Ahnfelt, Jorge, E. See Garcia Paez, J. M., 125 Azad, A. K. N.-O.: Transmittance of a bioceramic June, C. H. See Shalaby, W. S. W., 173 ; Sermsinthem, N.:; Chandrkrachang, S.; dental resorative material based on cal- Stevens, W. I Chitosan membrane as a cium aluminate, 94 Kainuma, R. See Sutou, Y., 64 wound-healing dressing: Characteriza- Kerinen, J. See Saikko, V., 141 tion and clinical application, 216 Fano, L. Kim, K.-N. See Oh, K.-T., 183 ; Fano, V.; Ma, W.; Wang, X.; Zhu, F.: Kim, Y.-S. See Oh, K.-T., 183 Hydrolytic degradation and cracks in res- Kramer, N. See Frankenberger, R., 25 Baba, N. in-modified glass-ionomer cements, 87 Kruyt, M. C. ; Watanabe, I.:; Liu, J.; Atsuta, M.: Mechan- Fano, V. See Fano, L., 8 ; Dhert, W. J. A.; Oner, C.; van Blitterswijt, ical strength of laser-welded cobalt-chro- Feng, Q. L. See Liao, S. S., 158 C. A.; Verbout, A. J.; de Bruijn, J. D.: mium alloy, 121 Ferreira, J. M. F. See Cheng, K., 33 Optimization of bone-tissue engineering Balan, J. See Yang. C.. 18 Flautre, B. See Massin, P., 205 in goats, 113 Bernard, J. P. See Szmukler-Moncler. S., 46 Frankenberger, R. Bouillaguet, S. See Wataha, J. C., 11 ; Strobel, W. O.; Lohbauer. U.; Kramer, N.; Lawn, B. See Zhang, Y., 166 Busscher, H. J. See Magetsari, R., 249 Petschelt, A The effect of six years of Leong, J. C. Y. See Zhao, F., 79 water storage on resin composite bond- Lewis, J. B. See Wataha, J. C., 11 ing to human dentin, 25 Liao, S. S. Calonius, O. See Saikko, V., 141 Furlan Wada, M. L. See la Luz Moreira, P.. ; Cul, F. Z.; Zhang, W.; Feng, Q. L.: Hierar- Candelaria Genari, S. See la Luz Moreira 38 chically biometric bone scaffold materials: P., 38 Furukawa, A. See Sutou, Y., 64 { Nano-HA/collagen/PLA composite, 158 Carrera, A. See Garcia Paez, J. M., 125 Liu, C. Castillo-Olivares, J. L. See Garcia Paez, Garcia Paez, J. M. : Huang. Y.; Chen, J.: The physicochemical J. M., 125 Carrera, A.: Jorge, I , Milian, 1.; Cordon, properties of the solidification of calcium Chandrkrachang, S. See Azad, \.: Maestro, M. A.; Rocha, A.; Castillo phosphate cement, 73 Chappard, D. See Massin, P., 205 Chen, J. See Liu, C., 73 Olivarea, J. | Resistance to tearing of Liu, ae See Baba, N.. 121 calf and ostrich pericardium: Influence of Lockwood, K. R. See Wataha, J. C Chen, Y. F. See MacQuarrie, R. A., 104 the type of suture material and the direc Lohbauer, U. See Frankenberger, R., 25 Cheng, K. tion of the suture line, 125 Loof, J. See Engqvist, H., 94 ; Weng, W.: Qu, H.; Du, P.; Shen, G.; Han, Gomathi, K. See Rafiuddin Ahmed, M., 241 Lowman, A. See Thomas, J., 135 G.; Yang, J.; Ferreira, J. M. F.: Sol-gel Gomes, K. See Thomas, J., 135 Lu, W. W. See Zhao, F., 79 preparation and /n Vitro test of fluorap Gopinath, D. See Rafiuddin Ahmed, M., 241 Luk, K. D. K. See Zhao, F., 7 atite/hydroxyapatite films, 33 Gray, H. See Shalaby, W. S. W., 173 Cheung, K. M. C. See Zhao, F., 79 Clarke, I. C. See Manaka, M., 149 Gustafson, A. See Manaka, M., 149 Ma, W. See Fano, L., 87 Coles, C. See MacQuarrie, R. A., 104 MacQuarrie, R. A. Corbett, J. T. See Shalaby, W. S. W., 173 Han, G. See Cheng, K., 33 - Chen, Y. F.: Coles, ¢ Anderson, G. I. Cordon, A. See Garcia Paez. J. M., 125 Hardouin, P. See Massin, P.. 205 W ear-particle-induced osteoclast osteol- Cristofolini, L. See Waide, V., 232 Hermansson, L. See Engqvist, H., 94 ysis: The role of particulates and me- Hillas, P. See Yang, C., 18 chanical strain, 104 Cul, F. Z. See Liao, S. S.. 158 Hilmy, C. R. See Magetsari, R., 249 Maestro, M. A. See Garcia Paez, J.M., 125 Huang, X. Magetsari, R. da Luz Moreira, P. ; Jiang, D.: Tan, S.: Apatite formation on ; Hilmy, C. R.; van Horn, J. R.; Busscher, —; Marreco, P. R.: Moraes, A. M.: Furlan the surface of wollastonite/tricalcium H. J.; Verkerke, G. J.; van der Mel, H. C.; Wada, M. | Candelaria, Genari. S phosphate composite immersed in simu Use and reuse of orthopedic implants in Analysis of cellular morphology, adhe lated body fluid, 70 developing countries, 249 sion, and proliferation on uncoated and Hunag, Y. See Liu, C., 73 Manaka, M. differently coated PVC tubes used in ex Calrke, I. C.; Yamamoto, K.; Shishido, tracorporeal circulation (ECC), 38 Imakiire, A. See Manaka, M., 149 T.; Gustafson, A.; Imaktire, A.: Stripe de Bruijn, J. D. See Kruyt. M. C., 113 Ishida, K. See Sutou, Y.. 64 wear rates in alumina THR-comparison Dhert, W. J. A. See Kruyt, M. C., 113 Ishikawa, K. See Momota, Y., 99; Takechi. of microseparation simulator study with Du, P. See Cheng, K., 33 M., 58 retrieved implants, 149 Journal of Biomedical Materials Research Part B: Applied Biomaterials, Vol. 69B, 254-255 (2004) Journal of Biomedical Materials Research (Applied Biomaterials) Author Index— Volume 69 Ahnfelt, N.-O. See Engqvist, H., 94 Eberhart, R. C. See Zilberman, M., | Jayakumar, R. See Rafiuddin Ahmed, M., 241 Anderegg, J. See Shabalovskaya, S., 223 Engqvist, H. Jiang, D. See Huang, X., 70 Anderson, G. I. See MacQuarrie, R. A., 104 ; L66f, J.; Upperstrém, S.; Phaneuf, M. W.:; Jonsson, J. C. See Engqvist, H., 94 Atsuta, M. See Baba, N.. 121 Jonsson, J. C.; Hermansson, L.; Ahnfelt, Jorge, E. See Garcia Paez, J. M., 125 Azad, A. K. N.-O.: Transmittance of a bioceramic June, C. H. See Shalaby, W. S. W., 173 ; Sermsinthem, N.:; Chandrkrachang, S.; dental resorative material based on cal- Stevens, W. I Chitosan membrane as a cium aluminate, 94 Kainuma, R. See Sutou, Y., 64 wound-healing dressing: Characteriza- Kerinen, J. See Saikko, V., 141 tion and clinical application, 216 Fano, L. Kim, K.-N. See Oh, K.-T., 183 ; Fano, V.; Ma, W.; Wang, X.; Zhu, F.: Kim, Y.-S. See Oh, K.-T., 183 Hydrolytic degradation and cracks in res- Kramer, N. See Frankenberger, R., 25 Baba, N. in-modified glass-ionomer cements, 87 Kruyt, M. C. ; Watanabe, I.:; Liu, J.; Atsuta, M.: Mechan- Fano, V. See Fano, L., 8 ; Dhert, W. J. A.; Oner, C.; van Blitterswijt, ical strength of laser-welded cobalt-chro- Feng, Q. L. See Liao, S. S., 158 C. A.; Verbout, A. J.; de Bruijn, J. D.: mium alloy, 121 Ferreira, J. M. F. See Cheng, K., 33 Optimization of bone-tissue engineering Balan, J. See Yang. C.. 18 Flautre, B. See Massin, P., 205 in goats, 113 Bernard, J. P. See Szmukler-Moncler. S., 46 Frankenberger, R. Bouillaguet, S. See Wataha, J. C., 11 ; Strobel, W. O.; Lohbauer. U.; Kramer, N.; Lawn, B. See Zhang, Y., 166 Busscher, H. J. See Magetsari, R., 249 Petschelt, A The effect of six years of Leong, J. C. Y. See Zhao, F., 79 water storage on resin composite bond- Lewis, J. B. See Wataha, J. C., 11 ing to human dentin, 25 Liao, S. S. Calonius, O. See Saikko, V., 141 Furlan Wada, M. L. See la Luz Moreira, P.. ; Cul, F. Z.; Zhang, W.; Feng, Q. L.: Hierar- Candelaria Genari, S. See la Luz Moreira 38 chically biometric bone scaffold materials: P., 38 Furukawa, A. See Sutou, Y., 64 { Nano-HA/collagen/PLA composite, 158 Carrera, A. See Garcia Paez, J. M., 125 Liu, C. Castillo-Olivares, J. L. See Garcia Paez, Garcia Paez, J. M. : Huang. Y.; Chen, J.: The physicochemical J. M., 125 Carrera, A.: Jorge, I , Milian, 1.; Cordon, properties of the solidification of calcium Chandrkrachang, S. See Azad, \.: Maestro, M. A.; Rocha, A.; Castillo phosphate cement, 73 Chappard, D. See Massin, P., 205 Chen, J. See Liu, C., 73 Olivarea, J. | Resistance to tearing of Liu, ae See Baba, N.. 121 calf and ostrich pericardium: Influence of Lockwood, K. R. See Wataha, J. C Chen, Y. F. See MacQuarrie, R. A., 104 the type of suture material and the direc Lohbauer, U. See Frankenberger, R., 25 Cheng, K. tion of the suture line, 125 Loof, J. See Engqvist, H., 94 ; Weng, W.: Qu, H.; Du, P.; Shen, G.; Han, Gomathi, K. See Rafiuddin Ahmed, M., 241 Lowman, A. See Thomas, J., 135 G.; Yang, J.; Ferreira, J. M. F.: Sol-gel Gomes, K. See Thomas, J., 135 Lu, W. W. See Zhao, F., 79 preparation and /n Vitro test of fluorap Gopinath, D. See Rafiuddin Ahmed, M., 241 Luk, K. D. K. See Zhao, F., 7 atite/hydroxyapatite films, 33 Gray, H. See Shalaby, W. S. W., 173 Cheung, K. M. C. See Zhao, F., 79 Clarke, I. C. See Manaka, M., 149 Gustafson, A. See Manaka, M., 149 Ma, W. See Fano, L., 87 Coles, C. See MacQuarrie, R. A., 104 MacQuarrie, R. A. Corbett, J. T. See Shalaby, W. S. W., 173 Han, G. See Cheng, K., 33 - Chen, Y. F.: Coles, ¢ Anderson, G. I. Cordon, A. See Garcia Paez. J. M., 125 Hardouin, P. See Massin, P.. 205 W ear-particle-induced osteoclast osteol- Cristofolini, L. See Waide, V., 232 Hermansson, L. See Engqvist, H., 94 ysis: The role of particulates and me- Hillas, P. See Yang, C., 18 chanical strain, 104 Cul, F. Z. See Liao, S. S.. 158 Hilmy, C. R. See Magetsari, R., 249 Maestro, M. A. See Garcia Paez, J.M., 125 Huang, X. Magetsari, R. da Luz Moreira, P. ; Jiang, D.: Tan, S.: Apatite formation on ; Hilmy, C. R.; van Horn, J. R.; Busscher, —; Marreco, P. R.: Moraes, A. M.: Furlan the surface of wollastonite/tricalcium H. J.; Verkerke, G. J.; van der Mel, H. C.; Wada, M. | Candelaria, Genari. S phosphate composite immersed in simu Use and reuse of orthopedic implants in Analysis of cellular morphology, adhe lated body fluid, 70 developing countries, 249 sion, and proliferation on uncoated and Hunag, Y. See Liu, C., 73 Manaka, M. differently coated PVC tubes used in ex Calrke, I. C.; Yamamoto, K.; Shishido, tracorporeal circulation (ECC), 38 Imakiire, A. See Manaka, M., 149 T.; Gustafson, A.; Imaktire, A.: Stripe de Bruijn, J. D. See Kruyt. M. C., 113 Ishida, K. See Sutou, Y.. 64 wear rates in alumina THR-comparison Dhert, W. J. A. See Kruyt, M. C., 113 Ishikawa, K. See Momota, Y., 99; Takechi. of microseparation simulator study with Du, P. See Cheng, K., 33 M., 58 retrieved implants, 149 Journal of Biomedical Materials Research Part B: Applied Biomaterials, Vol. 69B, 254-255 (2004) AUTHOR INDEX 255 Marcolongo, M. See Thomas, J., 135 molecular weight polyethylene in a pin- van Blitterswijt, C. A. See Kruyt, M.C., 113 Marreco, P. R. See la Luz Moreira, P., 35 on-disk wear simulation of total hip pros- van der Mel, H. C. See Magetsari, R., 249 Massin, P. thesis, 141 van Horn, J. R. See Magetsari, R., 249 —+; Chappard, D.; Flautre, B.; Hardouin, P.: Schwade, N. D. See Zilberman, M., | Verbout, A. J. See Kruyt, M. C., 113 Migration of polyethylene particles Sehgal, P. K. See Rafiuddin Ahmed, M., 241 Verkerke, G. J. See Magetsari, R., 249 around nonloosened cemented femoral Sermsintham, N. See Azad, A. K., 216 Volkmann, K. R. See Wataha, J. C., 11 components from a total hip arthroplas- Shabalovskaya, S. ty—an autopsy study, 205 —: Rondelli, G.; Anderegg, J.; Xiong, J. P.; McLaren, C. I. See Rasmussen, S. T., 195 Wu, M.: Comparative corrosion perfor- Waide, V. Messer, R. L. W. See Wataha, J. C., 11 mance of black oxide, sandblasted, and —:; Cristofolini, L.; Toni, A.: An experimen- Millan, I. See Garcia Paez, J. M., 125 fine-drawn nitinol wires in potentiody- tal analogue to model the fibrous tissue Miyamoto, Y. See Momota, Y., 99; Takechi, namic and potentiostatic tests: Effects of layer in cemented hip replacements, 232 M., 58 chemical etching and elctropolishing, Wang, X. See Fano, L., 87 Momota, Y. ae Wataha, J. C. —; Miyamoto, Y.; Ishikawa, K.; Takechi, M.; Shalaby, S. W. See Shalaby, W. S. W., 173 —; Lewis, J. B.; Volkmann, K. R.; Lock- Yuasa, T.; Tatehara, S.; Nagayama, M.: Shalaby, W. S. W. wood, P. E.; Messer, R. L. W.; Bouil- Effects of neutral sodium hydrogen —; Yeh, H.; Woo, E.; Corbett, J. T.; Gray, H.; laguet, S.: Sublethal concentrations of phosphate on the setting property and June, C. H.; Shalaby, S. W.: Absorbable AU (Ill), Pd (ID, and Ni(II) differentially hemostatic ability of hydroxyapatite microparticulate cation exchanger for alter inflammatory cytokine secretion putty as a local hemostatic agent for immunotherapeutic delivery, 173 from activated monocytes, 11 bone, 99 Shen, G. See Cheng, K., 33 Watanabe, I. See Baba, N., 121 —; See Takechi, M., 58 Shishido, T. See Manaka, M., 149 Weng, W. See Cheng, K., 33 Moraes, A. M. See la Luz Moreira, P., 38 Sittel, C. Wong, C. T. See Zhao, F., 79 ; Polydimethylsiloxane particles are not ex- Woo, E. See Shalaby, W. S. W., 173 perimental in the human larynx, 251 Nagayama, M. See Momota, Y., 99; Take- Wu, M. See Shabalovskaya, S., 223 Stevens, W. F. See Azad, A. K., 216 chi, M., 58 Strobel, W. O. See Frankenberger, R., 25 Notbohm, H. See Yang, C., 18 Sutou, Y. Xiong, J. P. See Shabalovskaya, S., 223 ; Omori, T.; Furukawa, A.; Takahashi, Y.: O’Brien, W. J. See Rasmussen, S. T., 195 Kainuma, R.; Yamauchi, K.; Yamashita, Oh, K.-T. S.: Ishida, K.: Development of medical Yamamoto, K. See Manaka, M., 149 :Kim, Y.-S.; Park, Y.-S.; Kim, K.-Y. guide wire of Cu-Al-Mn-base superelas- Yamashita, S. See Sutou, Y., 64 Properties of super stainless steels for tic alloy with functionally graded char- Yamauchi, K. See Sutou, Y., 64 orthodontics applications, 183 acteristics, 64 Omori, T. See Sutou, Y., 64 Szmukier-Moncler, S. Yang, C. Oner, C. See Kruyt, M. C., 113 ; Testori, T.; Bernard, J. P.: Etched im- ; Hillas, P.; Tang, J.; Balan, J.; Notbohm, H.; Polarek, J.: Development of a recom- plants: A comparative surface analysis of four implant systems, 46 binant human collegan-type III baed he- Park, Y.-S. See Oh, K.-N., 183 mosat, 18 Petschelt, A. See Frankenberger, R.. Yang, J. See Cheng, K., 33 Phaneuf, M. W. See Engqvist, H.., Takahashi, Y. See Sutou, Y., 64 Yao, K. D. See Zhao, F., 79 Polarek, J. See Yang, C., 18 lakechi, M. Yeh, H. See Shalaby, W. S. W., 173 ; Miyamoto, Y.; Momota, Y.; Yuasa, T.; Yuasa, T. See Momota, Y., 99; Takechi, M.., 58 Qu, H. See Cheng, K., 33 Tatehara, S.: Nagayama, M.: Ishikawa, K.: Effects of various sterilization meth- ods on the setting and mechanical prop- Rafiuddin Ahmed, M. erties of apatite cement, 58 Zhang, W. See Liao, S. S., 158 ; Gopinath, D.; Gomathi, K.; Sehgai, P. K.; ; See Momota, Y., 99 Zhang, Y. Jayakumar, J.: Alpha-crystallin-incorpo Tan, S. See Huang, X., 70 ; Lawn, B.: Long-term strength of ceramics rated collagen matrices as an aid for der- Tang, J. See Yang, C., 18 for biomedical applications, 166 mal wound healing, 241 fatehara, S. See Momota, Y.., 99: Takechi, Zhao, F. Rasmussen, S. T. M., 58 >Lu, W. W.; Luk, K. D. K.; Cheung, : McLaren, C. I.: O’Brien, W. J.: The effect Testori, T. See Szmukler-Moncler. S., 46 K. M. C.; Wong, C. T.; Leong, 1. CY. of cesium-containing leucite additions on Thomas, J. Yao, K. D.: Surface treament of inject- the thermal and mechanical properties of Gomes, K.: Lowman, A.; Marcolongo, able strontium-containing bioactive bone two leucite-based porcelains, 195 M.: The effect of dehydration history on cement for vertebroplasty, 79 Rocha, A. See Garcia Paez, J.M., 125 PVA/PVP hydrogels for nucleus pulpo- Zhu, F. See Fano, L., 87 Rondelli, G. See Shabalovskaya, S., 223 sus replacement, 135 Zilberman, M. Toni, A. See Waide, V., 232 ; Schwade, N. D.; Eberhart, R. C.: Protein- Saikko, V. loaded bioresorbable fibers and expand- ; Calonius, O.; Keranen, J.: Effect of slide able stents: Mechanical properties and track shape on the wear of ultra-high Upperstrém, S. See Engqvist, H., 94 protein release, | Journal of Biomedical Materials Research (Applied Biomaterials) Subject Index—Volume 69 Absorbable polymers, 173 Critical loads, 166 Laser welding, 121 Acid etching, 46 Cu-Al-Mn-based shape memory alloy, Leutic porcelain, 195 Adhesives, 25 64 Lifetime, 166 Albumin release, | Cytoxicity, 183 Long-term hydrolytic degradation of a cyrstallin, 241 resin-modified glass-ionomer Alumina, 149 Degradation, 25 cements, 87 Anisotropy, 125 Dehydration/rehydration, 135 Antioxidant enzymes, 241 Dental crowns, 166 Margin alaysis, 25 Apatite, 58 Dentin, 25 Mechanical properties, 1, 58 Apatite cement, 58 Differentiation, 104 Mechanical strain, 104 Apoptosis, 104 Metal ion release, 183 Aspect ratio, 141 Ectopic, 113 Metals, 11 ASTM F746 potentiostatic, 223 Electropolished surface, 223 Methyl methacrylate (MMA), 79 Endoscopic, 135 Microcracks, 87 Bainitic transformation, 64 Extracellular matrix, 113 Microparticulate, | 73 Bilayers, 166 Extracorpeal circulation, 38 Microseparation, 149 Bioactive bone cement, 79 Microstructure, 87 Biocompatibility, 183 Fibrous tissue layer, 232 Monocytes, 11] Biodegradable, 158 Film, 33 Biomaterials, 249 Fluorapatite/hydroxyapatite, 33 Nanocomposite, 158 Biomechanics, 79 Foreign body response, 205 Nitinol wire, 223 Biometric, 158 Fracture, 166 Nucleus pulposus, 135 Bioresorbable fibers, | Black oxide, 223 Gamma, 58 Opacity, 94 Bone, 113 Goats. 13 Orthodontic appliance, 183 Brittlle coatings, 166 Gravimetric analysis, 87 Orthopedic implants, 249 Guide wire, 64 Osseolite, 46 Calcium aluminate, 94 Osteoclast, 104 Calcium phosphate cement, Hemosat, 18 Osteolysis, 205 Calcium-phosphate cement Hemostatic agents, 99 Ostrich pericardium, 125 Calf pericardium, 125 Heparin, 38 Carck velocity, 166 High stiffness, 64 Cardiac bioprostheses, 125 Hip replacement prosthesis, 205 Passive film, 183 Cation exchanger, 173 Histopathology, 216 Phosphatidylcholine, 38 Cell culture, 11, 158 Human larynx, 25] Phosphatidylethanolamine, 38 Cells, 113 Hydration, 73 Physicochemical property, 73 Cemented implants, Hydrogels, 135 Pin-on-disk, 141 Ceramic, 149 Hydroxyapatite, 73 Platelet, 18 Cesium, 195 Hydroxyapatite putty, 99 Poly (vinyl) chloride, 38 Poly(L-lactic acid), | Chemically etching, 223 Chitosan mesh membrane, 216 ILIP, 11 Polydimethylsiloxine particles, 251 Chrysotherapy, 11 IL6, 11 Polyethylene, 205 Clinical evaluation, 216 Immunotherapy, Polyethylene wear, 141 Cobalt-chronium alloy, 121 Inclusions, 223 Polytetrafluoroethylene, 251 Collagen, 241 In situ porous structure, 70 Potentiodynamic, 223 Composite femurs, 232 In vitro evaluation, 33 Protein adsorption, 173 Composites, 70 In vitro simulations, Ze Confocal fluorescent microscopy, 87 Radiopacity, 94 Corrosion resistance, 183, 223 Joint strength, 121 Recombinant human collagen, 18 Journal of Biomedical Materials Research Part B Applied Biomaterials, Vol. 69B, 256-25 (2004) SUBJECT INDEX Resin composites, 25 Stent, | Transformation toughening, 195 Retrieval, 149 Sterilization, 58 Transmitance, 94 Strength, 195 Sandblasting, 46, 223 Super stainless steels, 183 Vertebroplasty, 79 Serum, 113 Superelasticity, 64 Setting reaction, 99 Surface treatment, 46, 79 Wear, 149 Silicone elastomer, 232 Wear debris, 205 Simulated body fluid, 70 Tearing, 125 Wear particles, 104 Simulator, 149 Thermal expansion Welding methods, 121 SLA, 46 THR, 149 Western world, 249 Slide track, 141 Tissue engineering, Wollastonite-tricalcium phosphate, 70 Sol-gel process, 33 TNFa, 11 Wound, 18 Solidification, 73 Total hip prosthesis, 141 Wound healing, 216, 241

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