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1
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0015287179
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Bonding Mechanisms at the Interface of Ceramic Prosthetic Materials
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1 L. L. Hench, R. J. Splinter, W. C. Allen, and T. K. Greenlee Jr., “ Bonding Mechanisms at the Interface of Ceramic Prosthetic Materials,” J. Biomed. Mater. Res. Symp., 2, 117–41 (1971).
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Hench, L.L.1
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Allen, W.C.3
Greenlee, T.K.4
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2
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0015851873
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Direct Chemical Bond of Bioactive Glass‐Ceramic Materials to Bone and Muscle
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2 L. L. Hench and H. A. Paschall, “ Direct Chemical Bond of Bioactive Glass‐Ceramic Materials to Bone and Muscle,” J. Biomed. Mater. Res. Symp., 4, 25–42 (1973).
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J. Biomed. Mater. Res. Symp.
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Hench, L.L.1
Paschall, H.A.2
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3
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Surface‐Active Biomaterials
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3 L. L. Hench and J. Wilson, “ Surface‐Active Biomaterials,” Science, 226, 630–6 (1984).
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Science
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Hench, L.L.1
Wilson, J.2
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4
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Bioceramics
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4 L. L. Hench, “ Bioceramics: From Concept to Clinic,” J. Am. Ceram. Soc., 74 [7] 1487–510 (1991).
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From Concept to Clinic
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Hench, L.L.1
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5
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Bioceramics
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5 L. L. Hench, “ Bioceramics,” J. Am. Ceram. Soc., 81 [7] 1705–28 (1998).
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Hench, L.L.1
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6
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33845296893
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Bioactive Glasses for Nonbearing Applications in Total Joint Replacement
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6 M. N. Rahaman, R. F. Brown, B. S. Bal, and D. E. Day, “ Bioactive Glasses for Nonbearing Applications in Total Joint Replacement,” Semin. Arthroplasty, 17, 102–12 (2006).
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Semin. Arthroplasty
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Rahaman, M.N.1
Brown, R.F.2
Bal, B.S.3
Day, D.E.4
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7
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34250195751
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Preparation and Bioactive Characteristics of a Porous 13–93 Glass, and Fabrication into the Articulating Surface of a Proximal Tibia
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7 Q. Fu, M. N. Rahaman, B. S. Bal, W. Huang, and D. E. Day, “ Preparation and Bioactive Characteristics of a Porous 13–93 Glass, and Fabrication into the Articulating Surface of a Proximal Tibia,” J. Biomed. Mater. Res., 82A, 222–9 (2007).
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Fu, Q.1
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Day, D.E.5
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8
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27944467401
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Bioactive Borate Glass Supports the Osteogenic Potential of Human Mesenchymal Stem Cells
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8 N. W. Marion, W. Liang, G. C. Reilly, D. E. Day, M. N. Rahaman, and J. J. Mao, “ Bioactive Borate Glass Supports the Osteogenic Potential of Human Mesenchymal Stem Cells,” Mech. Adv. Mater. Struct., 12, 239–46 (2005).
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Mech. Adv. Mater. Struct.
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Marion, N.W.1
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Day, D.E.4
Rahaman, M.N.5
Mao, J.J.6
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9
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33745078955
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Kinetics and Mechanism of the Conversion of Silicate (45S5), Borate, and Borosilicate Glasses to Hydroxyapatite in Dilute Phosphate Solutions
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9 W. Huang, D. E. Day, K. Kittiratanapiboon, and M. N. Rahaman, “ Kinetics and Mechanism of the Conversion of Silicate (45S5), Borate, and Borosilicate Glasses to Hydroxyapatite in Dilute Phosphate Solutions,” J. Mater. Sci. Mater. Med., 17, 583–96 (2006).
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Huang, W.1
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Kittiratanapiboon, K.3
Rahaman, M.N.4
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10
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33847765981
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Mechanisms for Converting Bioactive Silicate, Borate, and Borosilicate Glasses to Hydroxyapatite in Dilute Phosphate Solution
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10 W. Huang, M. N. Rahaman, D. E. Day, and Y. Li, “ Mechanisms for Converting Bioactive Silicate, Borate, and Borosilicate Glasses to Hydroxyapatite in Dilute Phosphate Solution,” Phys. Chem. Glass.: Europ. J. Glass Sci. Technol. Part B, 47 [6] 647–58 (2006).
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Phys. Chem. Glass.: Europ. J. Glass Sci. Technol. Part B
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Huang, W.1
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Day, D.E.3
Li, Y.4
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11
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Borate Glasses for Bioactive Coatings on Titanium
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11 H. K. Teitelbaum, “ Borate Glasses for Bioactive Coatings on Titanium ”; M.S. Thesis, University of Missouri‐Rolla, 2002.
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Teitelbaum, H.K.1
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12
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36849005126
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Bioactive Borate Glass Coatings for Titanium and its Alloys
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12 L. Peddi, “ Bioactive Borate Glass Coatings for Titanium and its Alloys ”; M.S. Thesis, University of Missouri‐Rolla, 2005.
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Peddi, L.1
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13
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36849032265
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Conversion of Bioactive Borosilicate Glass to Multilayered Hydroxyapatite in Dilute Phosphate Solution
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13 Y. Li, M. N. Rahaman, B. S. Bal, and D. E. Day, “ Conversion of Bioactive Borosilicate Glass to Multilayered Hydroxyapatite in Dilute Phosphate Solution,” J. Am. Ceram. Soc., 90 [12] 3804–10 (2007).
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Li, Y.1
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14
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0024961439
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Early Stages of Calcium‐Phosphate Layer Formation in Bioglass
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14 A. E. Clark and L. L. Hench, “ Early Stages of Calcium‐Phosphate Layer Formation in Bioglass,” J. Non Cryst. Solids, 113, 195–202 (1989).
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Clark, A.E.1
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15
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0027587594
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Solution Effects on the Surface Reaction of a Bioactive Glass
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15 M. R. Filgueiras, G. LaTorre G, and L. L. Hench, “ Solution Effects on the Surface Reaction of a Bioactive Glass,” J Biomed. Mater. Res., 27, 445–53 (1993).
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J Biomed. Mater. Res.
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Filgueiras, M.R.1
LaTorre G, G.2
Hench, L.L.3
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16
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0038381770
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Transformation of Borate Glasses into Biologically Useful Materials
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16 D. E. Day, J. E. White, R. F. Brown, and K. D. McMenamin, “ Transformation of Borate Glasses into Biologically Useful Materials,” Glass Technol., 44 [2] 75–81 (2003).
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Day, D.E.1
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17
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85120587851
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Formation and Dissolution Mechanisms of Calcium Phosphates in Aqueous Systems, in: Hydroxyapatite and Related Materials
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17 G. H. Nancollas and J. Zhang, “ Formation and Dissolution Mechanisms of Calcium Phosphates in Aqueous Systems ”; pp. 73–81 in Hydroxyapatite and Related Materials, Edited by P. W. Brown, and B. Constantz. CRC Press, Boca Raton, FL, 1994.
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Nancollas, G.H.1
Zhang, J.2
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18
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0032845206
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Removal of Phosphorus and Organic Matter by Alum During Wastewater Treatment
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18 G. W. Van Loon and A. I. Omoike, “ Removal of Phosphorus and Organic Matter by Alum During Wastewater Treatment,” Water Res., 33, 3617–27 (1999).
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Van Loon, G.W.1
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19
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How Useful is SBF in Predicting in vivo Bone Bioactivity
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19 T. Kokubo and H. Takadama, “ How Useful is SBF in Predicting in vivo Bone Bioactivity,” Biomaterials, 27, 2907–15 (2007).
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Kokubo, T.1
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20
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84980256151
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Multilayer Corrosion Films on Bioglass Surfaces
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20 C. G. Pantano Jr., A. E. Clark Jr., and L. L. Hench, “ Multilayer Corrosion Films on Bioglass Surfaces,” J. Am. Ceram. Soc., 57 [9] 412–3 (1974).
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Pantano, C.G.1
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21
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0016870768
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Auger Spectroscopic Analysis of Bioglass Corrosion Films
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21 A. E. Clark Jr., C. G. Pantano Jr., and L. L. Hench, “ Auger Spectroscopic Analysis of Bioglass Corrosion Films,” J. Am. Ceram. Soc., 59 [1–2] 37–9 (1976).
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Clark, A.E.1
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22
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Compositional Dependence of the Formation of Calcium Phosphate Films on Bioglass
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22 M. Ogino, F. Ohuchi, and L. L. Hench, “ Compositional Dependence of the Formation of Calcium Phosphate Films on Bioglass,” J. Biomed. Mater. Res., 14, 55–64 (1980).
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Ogino, M.1
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23
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0000768845
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Formation of Calcium Phosphate Films on Silicate Glasses
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23 M. Ogino and L. L. Hench, “ Formation of Calcium Phosphate Films on Silicate Glasses,” J. Non-Cryst. Solids, 38/39, 673–8 (1980).
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J. Non-Cryst. Solids
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Ogino, M.1
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24
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0025449531
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Solutions Able to Reproduce in vivo Surface‐Structure Changes in Bioactive Glass–Ceramic A‐W
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24 T. Kokubo, H. Kushitani, S. Sakka, T. Kitsugi, and T. Yamamuro, “ Solutions Able to Reproduce in vivo Surface‐Structure Changes in Bioactive Glass–Ceramic A‐W,” J. Biomed. Mater. Res., 24, 721–34 (1990).
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Kokubo, T.1
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25
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0001075416
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Compositional Dependence of Bioactivity of Glasses in the System CaO–SiO2–Al2O3
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25 C. Ohtsuki, T. Kokubo, and T. Yamamuro, “ Compositional Dependence of Bioactivity of Glasses in the System CaO–SiO 2–Al 2 O 3: Its In Vitro Evaluation,” J. Mater. Sci.: Mater. Med., 3, 119–25 (1992).
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Its In Vitro Evaluation
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Ohtsuki, C.1
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