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Journal of Biomedical Materials Research Author Index—Volume 44 Acarturk, T. O. Cansell, M. Dohi, Y. See Ohgushi, H., 381 —; Peel, M. M.; Petrosko, P.; —; Parisel, C.; Jozefonvicz, J.; Downes, S. See McFarland, C. D., 1 LaFramboise, W.; Johnson, P. C.; Letourneur, D.: Liposomes coated Dua, C. DiMilla, P. A.: Control of with chemically modified dextran —; Cui, F. Z.; Zhu, X. D.; de Groot, attachment, morphology, and interact with human endothelial K.: Three-dimensional proliferation of skeletal myoblasts cells, 140 nano-HAp/collagen matrix on silanized glas Caruelle, J.-P. See Blanquaert, F., 63 loading with osteogenic cells in Agrawal, C. M. See Wang, X., 456 Carvalho, G. S. See Morais, S., 176 organ culture, 407 Ahola, M. See Kortesuo, P., 162 Chen, J. Dupuy, B. See Fabre, T., 429 Albrecht, W. See Groth, T., 341 —,; Park, H.; Park, K.: Synthesis of Durandeau, A. See Fabre, T., 429 Altankov, G. See Groth, T., 341 superporous hydrogels: Hydrogels Anderson, J. M. See DeFife, K. M., with fast swelling and 298 superabsorbent properties, 53 Engbers, G. H. M. See Bos, G. W., —; See Jenney, C. R., 206 Chignier, E. See Guidollet, J., 156 330 —; See Yun, J. K., 87 Clapper, D. L. See DeFife, K. M., 298 Evans, N. D. See Roy, M. E., 191 Askendal, A. See Kalltorp, M., 222 Couillaud, S. See Toquet, J., 98 Evans, P. See Zreigat, H., 389 Cui, F. Z. See Du, C., 407 Balasubramanian, V. Fabre, T. —; Grusin, N. K.; Bucher, R. W.; Daculsi, G. See Toquet, J., 98 —; Belloc, F.; Dupuy, B.; Schappacher, Turitto, V. T.; Slack, S. M.: Dalton, B. A. See McFarland, C. D., 1 M.; Soum, A.; Bertrand-Barat, J.; Residence-time dependent changes de Chalain, T. Baquey, C.; Durandeau, A..: in fibrinogen adsorbed to —; Phillips, J. H.; Hinek, A.: Polymorphonuclear cell apoptosis polymeric biomaterials, 253 Bioengineering of elastic cartilage in exudates generated by Baquey, C. See Fabre, T., 429 with aggregated porcine and polymers, 429 Barritault, D. See Blanquaert, F., 63 human auricular chondrocytes and Feijen, J. See Bos, G. W., 330 Belloc, F. See Fabre, T., 429 hydrogels containing alginate, Felder III, G. See Wu, L., 371 Bertrand-Barat, J. See Fabre, T., 429 collagen, and «-elastin, 280 Fernandes, M. H. See Morais, S., 176 Best, S. M. See Gibson, I. R., 422 de Groot, K. See Du, C., 407 Beugeling, T. See Bos, G. W., 330 DeFife, K. M. Blanquaert, F. —-; Shive, M. S.; Hagen, K. M.; Garner, B. —,; Barritault, D.; Caruelle, J.-P.: Clapper, D. L.; Anderson, J. M.: —; Georgevich, A.; Hodgson, A. J.; Effects of heparan-like polymers Effects of photochemically Liu, L.; Wallace, G. G.: associated with growth factors on immobilized polymer coatings on Polypyrrole-heparin composites as osteoblast proliferation and protein adsorption, cell adhesion, stimulus-responsive substrates for phenotype expression, 63 and the foreign body reaction to endothelial cell growth, 121 Bonfield, W. See Gibson, I. R., 422 silicone rubber, 298 Gayet, O. See Guidollet, J., 156 Bonneaux, F. See Zambaux, M. F., 109 Dellacherie, E. See Zambaux, M. F., Georgevich, A. See Garner, B., 121 Bos, G. W. 109 Geurtsen, W. —; Scharenborg, N. M.; Poot, A. A.; Dias, N. See Morais, S., 176 —; Spahl, W.; Leyhausen, G.: Engbers, G. H. M.; Beugeling, T.; DiMilla, P. A. See Acarturk, T. O., Variability of cytotoxicity and van Aken, W. G.; Feijen, J.: 355 leaching of substances from four Proliferation of endothelial cells Ding, S.-J. light-curing pit and fissure on surface-immobilized —; Ju, C.-P.; Lin, J.-H. C.: sealants, 73 albumin-heparin conjugate loaded Characterization of hydroxyapatite Gibson, I. R. with basic fibroblast growth factor, and titanium coatings sputtered on —,; Best, S. M.; Bonfield, W.: Chemical 330 Ti-6AI-4V substrate, 266 characterization of Bucher, R. W. See Balasubramanian, Dinh, S. M. See Variankaval, N. E., silicon-substituted hydroxyapatite, Vip nO 397 422 Journal of Biomedical Materials Research, Vol. 44, 462-465 (1999) Journal of Biomedical Materials Research Author Index—Volume 44 Acarturk, T. O. Cansell, M. Dohi, Y. See Ohgushi, H., 381 —; Peel, M. M.; Petrosko, P.; —; Parisel, C.; Jozefonvicz, J.; Downes, S. See McFarland, C. D., 1 LaFramboise, W.; Johnson, P. C.; Letourneur, D.: Liposomes coated Dua, C. DiMilla, P. A.: Control of with chemically modified dextran —; Cui, F. Z.; Zhu, X. D.; de Groot, attachment, morphology, and interact with human endothelial K.: Three-dimensional proliferation of skeletal myoblasts cells, 140 nano-HAp/collagen matrix on silanized glas Caruelle, J.-P. See Blanquaert, F., 63 loading with osteogenic cells in Agrawal, C. M. See Wang, X., 456 Carvalho, G. S. See Morais, S., 176 organ culture, 407 Ahola, M. See Kortesuo, P., 162 Chen, J. Dupuy, B. See Fabre, T., 429 Albrecht, W. See Groth, T., 341 —,; Park, H.; Park, K.: Synthesis of Durandeau, A. See Fabre, T., 429 Altankov, G. See Groth, T., 341 superporous hydrogels: Hydrogels Anderson, J. M. See DeFife, K. M., with fast swelling and 298 superabsorbent properties, 53 Engbers, G. H. M. See Bos, G. W., —; See Jenney, C. R., 206 Chignier, E. See Guidollet, J., 156 330 —; See Yun, J. K., 87 Clapper, D. L. See DeFife, K. M., 298 Evans, N. D. See Roy, M. E., 191 Askendal, A. See Kalltorp, M., 222 Couillaud, S. See Toquet, J., 98 Evans, P. See Zreigat, H., 389 Cui, F. Z. See Du, C., 407 Balasubramanian, V. Fabre, T. —; Grusin, N. K.; Bucher, R. W.; Daculsi, G. See Toquet, J., 98 —; Belloc, F.; Dupuy, B.; Schappacher, Turitto, V. T.; Slack, S. M.: Dalton, B. A. See McFarland, C. D., 1 M.; Soum, A.; Bertrand-Barat, J.; Residence-time dependent changes de Chalain, T. Baquey, C.; Durandeau, A..: in fibrinogen adsorbed to —; Phillips, J. H.; Hinek, A.: Polymorphonuclear cell apoptosis polymeric biomaterials, 253 Bioengineering of elastic cartilage in exudates generated by Baquey, C. See Fabre, T., 429 with aggregated porcine and polymers, 429 Barritault, D. See Blanquaert, F., 63 human auricular chondrocytes and Feijen, J. See Bos, G. W., 330 Belloc, F. See Fabre, T., 429 hydrogels containing alginate, Felder III, G. See Wu, L., 371 Bertrand-Barat, J. See Fabre, T., 429 collagen, and «-elastin, 280 Fernandes, M. H. See Morais, S., 176 Best, S. M. See Gibson, I. R., 422 de Groot, K. See Du, C., 407 Beugeling, T. See Bos, G. W., 330 DeFife, K. M. Blanquaert, F. —-; Shive, M. S.; Hagen, K. M.; Garner, B. —,; Barritault, D.; Caruelle, J.-P.: Clapper, D. L.; Anderson, J. M.: —; Georgevich, A.; Hodgson, A. J.; Effects of heparan-like polymers Effects of photochemically Liu, L.; Wallace, G. G.: associated with growth factors on immobilized polymer coatings on Polypyrrole-heparin composites as osteoblast proliferation and protein adsorption, cell adhesion, stimulus-responsive substrates for phenotype expression, 63 and the foreign body reaction to endothelial cell growth, 121 Bonfield, W. See Gibson, I. R., 422 silicone rubber, 298 Gayet, O. See Guidollet, J., 156 Bonneaux, F. See Zambaux, M. F., 109 Dellacherie, E. See Zambaux, M. F., Georgevich, A. See Garner, B., 121 Bos, G. W. 109 Geurtsen, W. —; Scharenborg, N. M.; Poot, A. A.; Dias, N. See Morais, S., 176 —; Spahl, W.; Leyhausen, G.: Engbers, G. H. M.; Beugeling, T.; DiMilla, P. A. See Acarturk, T. O., Variability of cytotoxicity and van Aken, W. G.; Feijen, J.: 355 leaching of substances from four Proliferation of endothelial cells Ding, S.-J. light-curing pit and fissure on surface-immobilized —; Ju, C.-P.; Lin, J.-H. C.: sealants, 73 albumin-heparin conjugate loaded Characterization of hydroxyapatite Gibson, I. R. with basic fibroblast growth factor, and titanium coatings sputtered on —,; Best, S. M.; Bonfield, W.: Chemical 330 Ti-6AI-4V substrate, 266 characterization of Bucher, R. W. See Balasubramanian, Dinh, S. M. See Variankaval, N. E., silicon-substituted hydroxyapatite, Vip nO 397 422 Journal of Biomedical Materials Research, Vol. 44, 462-465 (1999) AUTHOR INDEX Gorbet, M. B. Effects of neutral sodium Letourneur, D. See Cansell, M., 140 —; Yeo, E. L.; Sefton, M. V.: Flow hydrogen phosphate on setting Levanen, E. See Peltola, T., 12 cytometric study of in vitro reaction and mechanical strength Leyhausen, G. See Geurtsen, W., 73 neutrophil activation by of hydroxyapatite putty, 322 Lin, J.-H. C. See Ding, S.-] biomaterials, 289 Iwaki, H. See Oonishi, H., 31 Lindenhayn, K. Gref, R. See Zambaux, M. F., 109 —; Perka,C -, SOppiittzzeerr,. RIx -S.; Heil Groth, T. H.-H.; Pommerening, K.; —; Altankov, G.; Kostadinova, A.; Jacob, K. I. See Variankaval, N. E., Mennicke, J.; Sittinger, M Krasteva, N.; Albrecht, W.; Paul, 397 Rentention of hyaluronic acid in D.: Altered vitronectin receptor alginate beads: Aspects for in Jenney, C. R. (ay integrin) function in fibroblasts cartilage engineering, 149° —; Anderson, J. M.: Effects of adhering on hydrophobic glass, surface-coupled polyethylene Liu, L. See Garner, B., 1 ai7l 1 341 Lofgren, P. See Lausmaa, J., 227 oxide on human macrophage Grunkemeier, J. M. See Tsai, W.-B., Louisot, P. See Guidollet, J., 156 adhesion and foreign body giant 130 cell formation in vitro, 206 Grusin, N. K. See Balasubramanian, Johnson, P. C. See Acarturk, T. O., Vi7 2530 5e-r Guicheux, J. See Toquet, J., 98 995 Ma, P. X. Jokinen, M. See Peltola, T., 12 Guidollet, J. —; Langer, R.: Morphology and Jozefonvicz, J. See Cansell, M., 140 —; Chignier, E.; Pillot, R.; Gayet, O.; Ju, C.-P. See Ding, S.-J., 266 mechanical function of long-term MacGregor, J.; Louisot, P.: itro engineered cartila Enhanced expression of P-selectin —; See Zhang, R., 446 (CD62P) by endothelial cells MacGregor, J. See Guidollet, ] seeded onto synthetic arterial Kalltorp, M. Matsuda, N. See Ohura, K., 168 prostheses (PET, Dacron®) is —; Askendal, A.; Thomsen, P.; Matsumura, T. See Ishikawa, K correlated with leukocyte Tengvall, P.: Ellipsometric studies Mayer, S. See McFarland, C. D interactions, 156 in vitro on kinetics of rat McFarland, C. D. complement activation, 222 —; Mayer, S.; Scotchford, C Kangasniemi, I. See Kortesuo, P., 162 B. A.; Steele, J. G.; Down —; See Peltola, T., 12 Attachment of cultured hun Hagen, K. M. See DeFife, K. M., 298 Karikusa, F. See Yamato, M., 44 bone cells to novel polymers Hallé, J.-P. See Robitaille, R., 116 Karlsson, S. See Kortesuo, P., 162 Mennicke, J. See Lindenhayn, K Hamanishi, C. See Ohura, K., 168 Kasemo, B. See Lausmaa, J., 227 Merritt, K. Hanawa, T. Kiesvaara, J. See Kortesuo, P., 162 —; Hitchins, V. M.; Neale, A. R —; Reply to Howlett’s ‘Early bone Kikuchi, A. See Yamato, M., 44 Tissue colonization from formation around Kim, P. See Peter, S. ] 14 implantable biomaterials with low calcium-ion-implanted t1i tanium Koerten, H. K. numbers of bacteria, 261 inserted into rat tibia,”’ o~s 35 yy Mikos, A. G. See Peter, S. J Hatzigiannis, G. P. See Orr, T. E., 308 calcium phosphate ceramics, 78 Minas, T. See Orr, T. E., 30 Heilmann, H.-H. See Lindenhayn, K., Kortesuo, P. Miyamoto, Y. See Ishikawa 149 —; Ahola, M.; :K arlsson, S.; Morais, S. Helsen, J. A. See Schrooten, J., 243 Kangasniemi, |.; Kiesvaara, J.; —; Dias, N.; Sousa, J. T|t Hench, L. L. See Oonishi, H., 31 Yli-Urpo, A.: Sol-gel-processed M. H.; Carvalho, G. S.: Heymann, D. See Toquet, J., 98 sintered silica xerogel as a carrier osteoblastic differentiation of Hinek, A. See de Chalain, T., 280 in controlled drug delivery, 162 human bone marrow cells in the Hitchins, V. M. See Merritt, K., 261 Kostadinova, A. See Groth, T., 341 pI resence of metal ions, 176 Hodgson, A. J. See Garner, B., 121 Krasteva, N. See Groth, T., 341 Horbett, T. A. See Tsai, W.-B., 130 Kushitani, S. See Oonishi, H., 31 Howlett, C. R. —; Early bone formation around Nagayama, M. See Ishikawa, K., 239292 calcium-ion-implanted titanium Nakajima, H. See Ohgushi, H., 381 inserted into rat tibia, 352 LaFramboise, W. See Acarturk, T. O., Neale, A. R. See Merritt, K., 261 355 —; See Zreigqat, H., 389 Nishimoto, S.-i. See Sato, H., 22 Lamoureux, M. See Robitaille, R., 116 Langer, R. See Ma, P. X., 217 Lausmaa, J. Ikeda, S. See Sato, H., 22 —,; Léfgren, P.; Kasemo, B.: Ohgushi, H. Ikemoto, N. See Sato, H., Adsorption and coadsorption of —; Yoshikawa, T.; Nakajima, H.; Ishikawa, J. See Sato, H., water and glycine on TiOQ,, 227 Tamai, S.; Dohi, Y.; Okunaga, K.: Ishikawa, K. Leblond, F. A. See Robitaille, R., 116 \l,0, doped apatite-wollastonite —; Miyamoto, Y.; Takechi, M.; LeGeros, R. Z. See Vallet-Regi, M., containing glass ceramic provokes Ueyama, Y.; Suzuki, K.; 416 osteogenic differentiation of Nagayama, M.; Matsumura, T.: Lepage, Y. See Robitaille, R., 116 marrow stromal stem cells, 381 AUTHOR INDEX Ohura, K. Pommerening, K. See Lindenhayn, Soum, A. See Fabre, T., 429 —; Hamanishi, C.; Tanaka, S.; K., 149 Sousa, J. P. See Morais, S., 176 Matsuda, N.: Healing of segmental Poot, A. A. See Bos, G. W., 330 Spahl, W. See Geurtsen, W., 73 bone defects in rats induced by a Spector, M. See Orr, T. E., 308 8B-TCP-MCPM cement combined Spitzer, R.-S. See Lindenhayn, K., 149 with rhBMP-2, 168 Qian, Z. Steele, J. G. See McFarland, C. D., 1 Okano, T. See Yamato, M., 44 —,; Sagers, R. D.; Pitt, W. G.: Sugihara, F. See Oonishi, H., 31 Investigation of the mechanism of Suzuki, K. See Ishikawa, K., 322 Okuhara, M. See Yamato, M., 44 the bioacoustic effect, 198 Okunaga, K. See Ohgushi, H., 381 Oldfield, F. F. Takechi, M. See Ishikawa, K., 322 —; Yasuda, H. K.: ESR study of MMA Ragel, C. V. See Vallet-Regi, M., 416 Tamai, S. See Ohgushi, H., 381 polymerization of peroxide /amine Rahiala, H. See Peltola, T., 12 Tanaka, S. See Ohura, K., 168 system: Bone cement formation, Tengvall, P. See Kalltorp, M., 222 Rho, J.-Y. See Roy, M. E., 191 436 Thomsen, P. See Kalltorp, M., 222 Robitaille, R. Oonishi, H. —; Pariseau, J.-F.; Leblond, F. A.; Toquet, J. —; Hench, L. L.; Wilson, J.; Sugihara, Lamoureux, M.; Lepage, Y.; Hallé, —; Rohanizadeh, R.; Guicheux, J.; F.; Tsuji, E.; Kushitani, S.; Iwaki, Couillaud, S.; Passuti, N.; Daculsi, J.-P.: Technical note: Studies on H.: Comparative bone growth G.; Heymann, D.: Osteogenic small (<350 jm) behavior in granules of bioceramic alginate-poly-L-lysine potential in vitro of human bone materials of various sizes, 31 microcapsules. III. Biocompatibility marrow cells cultured on Orr, T. E. of smaller versus standard macroporous biphasic calcium —; Patel, A. M.; Wong, B.; microcapsules, 116 phosphate ceramic, 98 Hatzigiannis, G. P.; Minas, T.; Rohanizadeh, R. See Toquet, J., 98 Tsai, W.-B. Spector, M.: Attachment of Romero, A. M. See Vallet-Regi, M., —; Grunkemeier, J. M.; Horbett, T. A.: periosteal grafts to articular Human plasma fibrinogen 416 cartilage with fibrin sealant, 308 Rosenberg, G. See Wu, L., 371 adsorption and platelet adhesion to polystyrene, 130 Rosenholm, J. B. See Peltola, T., 12 Roy, M. E. ‘Tsut,¥. Y¥. See) Roy, M:. E; 191 —; Rho, J.-Y.; Tsui, T. Y.; Evans, Tsuji, E. See Oonishi, H., 31 Pariseau, J.-F. See Robitaille, R. N. D.; Pharr, G. M.: Mechanical Tsuji, H. See Sato, H., 22 Parisel, C. See Cansell, M., 140 and morphological variation of the Turitto, V. T. See Balasubramanian, Park, H. See Chen, J., 53 Vi, 2535 Park, K. See Chen, J., 5 ~3 , human lumbar vertebral cortical and trabecular bone, 191 Passuti, N. See Toquet, J., 98 Rubash, H. E. See Wang, X., 456 Patel, A. M. See Orr, T. E., 308 Ueyama, Y. See Ishikawa, K., 322 Runt, J. See Wu, L., 371 Paul, D. See Groth, T., 341 Peel, M. M. See Acarturk, T. O., ‘ Peltola, T. Vallet-Regi, M. Sagers, R. D. See Qian, Z., 198 —; Romero, A. M.; Ragel, C. V.; —; Jokinen, M.; Rahiala, H.; Levanen, Sakurai, Y. See Yamato, M., 44 LeGeros, R. Z.: XRD, SEM-EDS, E.; Rosenholm, J. B.; Kangasniemi, Sato, H. and FTIR studies of in vitro [.; Yli-Urpo, A.: Calcium —; Tsuji, H.; Ikeda, S.; Ikemoto, N.; growth of an apatite-like layer on phosphate formation on porous Ishikawa, J.; Nishimoto, S.-i.: sol-gel glasses, 416 sol-gel-derived SiO, and CaO-P,O.-SiO, substrates in vitro, Enhanced growth of human van Aken, W. G. See Bos, G. W., 330 vascular endothelial cells on van der Meulen, J. See Koerten, 12 negative ion (Ag )-implanted H.K.;.78 Perka, C. See Lindenhayn, K., 149 hydrophobic surfaces, 22 Van Oosterwyck, H. See Schrooten, Peter, S. J. Schappacher, M. See Fabre, T., 429 J., 243 —; Kim, P.; Yasko, A. W.; Yaszemski, Scharenborg, N. M. See Bos, G. W., Vander Sloten, J. See Schrooten, J., M. J.; Mikos, A. G.: Crosslinking 330 243 characteristics of an injectable Schrooten, J. Variankaval, N. E. poly(propylene fumarate)/ —,; Van Oosterwyck, H.; Vander —; Jacob, K. I.; Dinh, S. M.: B-tricalcium phosphate paste and Sloten, J.; Helsen, J. A.: Adhesion Crystallization of 6-estradiol in an mechanical properties of the of new bioactive glass coating, 243 acrylic transdermal drug delivery crosslinked composite for use Scotchford, C. See McFarland, C. D., 1 system, 397 as a biodegradable bone cement, Sefton, M. V. See Gorbet, M. B., 289 Vigneron, C. See Zambaux, M. F., 109 314 Shanbhag, A. S. See Wang, X., 456 Petrosko, P. See Acarturk, T. O., 355 Shive, M. S. See DeFife, K. M., 298 Pharr, G. M. See Roy, M. E., 191 Sittinger, M. See Lindenhayn, K., 149 Wallace, G. G. See Garner, B., 121 Phillips, J. H. See de Chalain, T., 280 Slack, S. M. See Balasubramanian, V., Wang, X. Pillot, R. See Guidollet, J., 156 253 —; Shanbhag, A. S.; Rubash, H. E.; Pitt, W. G. See Qian, Z., 198 Snyder, A. J. See Wu, L., 371 Agrawal, C. M.: Short-term effects AUTHOR INDEX of bisphosphonates on the cytoskeletal reorganization are Zambaux, M. F. biomechanical properties of canine required for cell detachment from —; Bonneaux, F.; Gref, R.; Vriehialttasc neria e bone, 456 cell culture surfaces grafted with a E.; Vigneron, C.: MPEO-PI A+ Weisberg, D. M. See Wu, L., 371 temperature-responsi\ e polymer, nanoparticles: Effect of MPEO Wilson, J. See Oonishi, H., 31 44 content on some of their Wong, B. See Orr, T. E., 308 Yasko, A. W. See Peter : properties, 109 Wu; E. Yasuda, H. K. See Oldfield, f Zhang, R. —; Weisberg, D. M.; Runt, J.; Felder Yaszemski, M. J. See Peter, S. J., —; Ma, P. X. Poly(a-hy droxyl Ill, G.; Snyder, A. J.; Rosenberg, Yeo, E. L. See Gorbet, M. B., 2 acids) /hydroxyapatite por Yli-Urpo, A. See Kortesuo, P., 162 composites for bone-tissue G.: An investigation of the in v stability of poly(ether —; See Peltola, T 12 engineering. I. Preparation Yoshikawa, T. See Ohgushi, H., 381 morphology, 446 urethaneurea) blood sacs, 371 Yun, J. K. Zhu, X. D. See Du, C., 4 —; Anderson, J. M.; Ziats, N. P.: Ziats, N. P. See Yun, J. K., 8 Cyclic-strain-induced endothelial Zreiqat, H. Yamato, M. cell expression of adhesion —; Evans, P.; Howlett, C. R —; Okuhara, M.; Karikusa, | molecules and their roles in surface chemical modificati Kikuchi, A.; Sakurai, Y.; Okano, T. monocyte—endothelial interaction, bioceramik onmn pphheennoottyvppee Signal transduction and o }n umarann |b done-ddeerr ivea 4 cel,l Journal of Biomedical Materials Research Subject Index—Volume 44 a,, integrin, 341 Cell detachment, 44 Foreign body giant cell, 206 Actin, 341 Cell-substrate interactions, 206 Fracture toughness, 456 Actin filament, 44 Ceramic, 78 Free radical, 436 Activation, 222 Coating, 243 Freeze-drying, 109 Adhesion molecules, 87, 156 Collagen, 280 Adhesion test, 243 Complement, 222 Gene expression, 381 Adsorption, 227 Complement consumption, 109 Glass ceramic, 381 Afibrinogenemic plasma, 130 Composite, 446 Ag” implantation, 22 Contact angle, 22 Hardness, 191 Albumin-heparin conjugate, 330 Convolving method, 407 Heparan-like molecules, 63 Alendronate, 456 Crystallization, 397 Heparin-binding growth factors, 63 Alginate, 149, 280 Cyclic strain, 87 Human bone-derived cells, 389 Alumina, 381 Cytotoxicity, 73 Human bone marrow, 98 Anti-P-selectin blocking MAb, 156 Human endothelial cells, 121, 140 Antibiotics, 198 Degradation, 78, 371 Human osteoblast-like cells, 176 Antibody, 253 Derivatized dextrans, 140 Hyaluronic acid, 149 Apatite-like layer, 416 Dextran coating, 140 Hybrid bone, 98 Apoptosis, 429 Differentiation, 176 Hydrogel, 53 Artificial heart, 371 DNA synthesis, 63 Hydroxyapatite, 31, 266, 322, 422, 446 Drug delivery, 162 Hydroxyapatite putty, 322 B-TCP-MCPM cement, 168 Bacterial biofilms, 198 Elastic modulus, 191 IgG, 222 Basic fibroblast growth factor (bFGF), Elastin, 280 Implantable, 162 330 Electroactive polymers, 121 Implanted medical devices, 198 Bioacoustic effect, 198 Electron microscopy, 78 in situ polymerizable, 314 Bioactive glass, 243 Ellipsometry, 222 in vitro bioactivity, 12, 416 Bioceramic, 422 Endocytosis, 140 in vitro neutrophil activation, 289 Bioceramics, 31 Endothelial cell, 44 in vivo study, 371 Biocompatibility, 116 Endothelial cell seeding, 330 Infection, 261 Bioglass®, 31 Endothelial cells, 87 Inflammatory reaction in vivo, 429 Biomaterial, 78, 98 Endothelial seeding, 156 IR, 397 Biomaterials, 289, 341, 355 Engineering of elastic cartilage, 280 Isolated chondrocytes, 280 Biomechanics, 308 ESR, 436 Isopropylacrylamide, 44 Bioresorbable cement, 168 Exudates, 429 Bisphenol-A, 73 Kinetics, 222 Bone, 446, 456 Fibrin, 149 Bone cell, 1 Fibrin sealant, 308 LDH method, 130 Bone cement, 1, 436 Fibrinogen, 253 Leaching, 73 Bone growth, 31 Fibrinogen adsorption, 130 Leukocyte adhesion, 156 Bone tissue engineering, 314 Fibroblast and leukocyte adhesion, Liposomes, 140 298 Ca-P ceramic, 98 Fibronectin, 1 Macrophage, 206 Calcium phosphate, 78 Fibrosis, 116 Magnesium, 389 Calcium phosphates, 31 Fibrous encapsulation, 298 Marrow cell, 381 Capillary action, 53 Finite element analysis, 243 Mechanical property, 217 Cartilage, 149, 217, 308 Fissure sealants, 73 Mechanical strength, 322 Cell aggregation, 280 Flow cytometry, 289 Mesenchymal stem cells, 98 Cell attachment, 1 Foam, 53 Metal ions, 176 Journal of Biomedical Materials Research, Vol. 44, 466-467 (1999) SUBJECT INDEX Microcapsule size, 116 Poly(methyl methacrylate), 436 Superabsorbent, 53 Microencapsulation, 116 Poly(propylene fumarate), 314 Superporous hydrogels, 53 Microstructure, 266 ’oly(urethaneurea), 371 Surface area, 12 Monocytes, 87 Polyethylene oxide, 206 Surface chemistry, 371 Monofilament, 261 Poly mer scaffold, 217, 446 Surface chemistry modification, Monomethoxypoly(ethylene -olymers, 253 Surface density, 109 oxyde)-poly(lactic acid), 109 olypyrrole heparin, 121 Surface modification Morphology, 217 -olystyrene, 22, 130 Swelling kinetics, 53 Mouse, 78 Pore volume, 12 MRNA, 389 Protein, 389 CP SI Multifilament, 261 rotein adsorption, 298 Tertiary aromatic amine, 436 Myoblasts, 355 Thermal desorption spectroscopy TiO,, 227 Raman microscopy, 397 Nano-HAp/collagen composite, 407 Xat, 222 Tissue compatibility, 2A3441 Nanoindentation, 191 Recombinant human bone Tissue culture, 381 NNeauntor2p9aa9lr tiscoldeis,u m 10h9y drogen phosphate, Resimdoernpceh ogtei5n mee,t ic25 3 pft rotein-2, 168 TTiissssuuL ee edinsgtit rniebeurtiinogn,, 112612, 14 Tissue engineering of bone > Resorbable, 31 Tissue reaction, 162 Nov el, 422 Self-assembled monolayers, 355 Titanium, 266 Optical microscopy, 397 Setting reaction, 322 Toremifene, 162 Organ culture, 407 Shear strength, 308 Trabecular bone, 191 Orthopedic biomaterial, 314 Silicon, 422 Transdermal drug delivery Orthopedics, l Silicone rubber, 298 Transplantation, 116 Osteoblast, 1, 63 Silver negative ions, 22 [yrosine phosphorylation Osteogenic potential, 98 SiO,-CaO-P,O; system, 416 UHMWPE, 456 Osteolysis, 456 Small-diameter vascular grafts, 330 Ultrasound, 198 Smart biomaterials, 1‘271 Unsaturated linear polyester P-selectin (CD62P), 156 Sol-gel, 12 Particulate, 31 Sol-gel glasses, 416 Vascular endothelial cells Periosteal graft, 308 Sol-gel-processed silica xerogel, Vascular prostheses, 1 pH, 78 Solubility, 12 Vertebral cortical shel Phenotype expression, 63 Sputtering, 266 Vitronectin, 11, 9 + 341 Photochemical immobilization, 298 Stability, 330 Water, 227 Plasma spraying, 243 Platelet adhesion, 130 taayp rnylslooc occ "C1 W etting 53 Platelets, 253 Substitution, 42 X-ray diffraction, 416

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