DAFTAR PUSTAKA. Anusavice, Kenneth.J., 2004, Phillips Buku Ajar Ilmu Bahan Kedokteran Gigi, EGC, Jakarta, 40.

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1 DAFTAR PUSTAKA Anusavice, Kenneth.J., 2004, Phillips Buku Ajar Ilmu Bahan Kedokteran Gigi, EGC, Jakarta, 40. Astawan, T.W., 2002, Jaringan Tulang, Laboratorium Histologi Departemen Anatomi Fakultas Kedokteran Hewan Institut Pertanian Bogor, Bogor. Barnes, S.J., dan Harris, L.P., 2008, Tissue Engineering Roles, Materials and Applications, Nova Science Publisher, New York, 192, 193. Ben-Nissan, B., 2014, Advances in Calcium Phosphate Biomaterials, Springer, Sydney, 202. Bohner, M, 2000, Calcium Orthophosphates in Medicine: From Ceramics to Calcium Phosphate Cements, Injury, 31(Suppl. D) : Buddula, A., Bhat, M., Assad, D.A., Thomas, B., 2011, Prevalence and Distribution of Vertical Osseous Defects in Patients Being Treated for Chronic Periodontitis, J Annals and Essences of Dentistry, 3. Byrappa, K., dan Ohachi., 2003, Crystal Growth Technology, Springer, United States, 527. Cardoso, H.A.I., Motisuke, M., Zavaglia, C.A., 2012, The Influence of Three Additives on the Setting Reaction Kinetics and Mechanical Strength Evolution of (alpha)-tricalcium Phosphate Cements, Key Engineering Materials, (2012): Carrodeguas, R.G., dan Aza, S.D., 2011, α-tricalcium Phosphate: Synthesis, Properties and Biomedical Applications, Acta Biomaterialia, 7: Chang, Raymond, 2003, Kimia Dasar: Konsep-Konsep Inti, Erlangga, Jakarta. Daculsi, G., LeGeros, R.Z., Heughebaert, M., Barbieux, I., 1990, Formation of Carbonate-Apatite Crystals After Implantation of Calcium Phosphate Ceramics, Calcif Tissue Int, 46; Dorozhkin, S.V., 2008, Calcium Orthophosphate Cements for Biomedical Application. J Mater Sci, 43: Dubruel, P., dan Vlierberghe, S., 2014, Biomaterials for Bone Regeneration: Novel Techniques and Applications, Elsevier, Oxford,

2 35 Ehara, A., Ogata, K., Imazato, S., Ebisu, S., Nakano, T., Umakoshi, Y., 2003, Effects of Alpha-TCP and TetCP on MC3T3 E1 Proliferation, Differentiation and Mineralization, Biomaterials, 24(5): Espanol, M., Perez, R.A., Montufar, E.B., Marichal, C., Sacco, A., Ginebra, M.P., 2009, Intrinsic Porosity of Calcium Phosphate Cements and Its Significance for Drug Delivery and Tissue Engineering Applications, Acta Biomaterialia, 5: Ferdiansyah., Rushadi, D., Ratam, F.A., 2011, Regenerasi pada Massive Bone Defect dengan Bovine Hydroxyapatite sebagai Scaffold Mesenchymal Stem Cell, JBP, 13(3) : 180. Fernandez, E., Gil, F.J., Ginebra, M.P., Driessens, F.C.M., Planell, J.A., Best, S.M., 1999, Calcium Phosphate Bone Cements for Clinical Applications, Part I: Solution Chemistry, J Mater Sci: Mater Med, 10: Food and Agriculture Organization, 2006, JECFA Combined Compendium of Food Additive Specification, Disodium Hydrogen Phosphate, pdf, diunduh tanggal 03/09/2015. Fragiskos, F.D., 2007, Oral Surgery, Springer-Verlag Berlin Heiderbelg, German, 70. Fried, George.H., dan Hademenos, George.J., 2006, Schaum s Outlines Biology, Penerbit Erlangga, Jakarta, 13. Ghosh, S.K., Nandi, S.K., Kundu, B., Datta, S., De, D.K., Roy, S.K., 2008, In vivo Response of Porous Hydroxyapatite and ß-Tricalcium Phosphate Prepared by Aqueous Solution Combustion Method and Comparison with Bioglass Scaffolds, J Biomed Mater Res B Appl Biomater, 86: Giannoudis, P.V., Dinopoulos, H., Tsiridis, E., 2005, Bone Substitutes: An Update. Injury, 363: S20 S27. Ginebra, M.P., Fernandez, E., De Maeyer, E.A.P., Verbeeck, R.M.H., Boltong, M.G., Ginebra, J., Driessens, F.C.M., 1997, Setting Reaction and Hardening of an Apatitic Calcium Phosphate Cement, J Dent Res, 76(4): Ginebra, M.P., Boltong, M.G., Fernandez, E., Planell, J.A., 1998, The Effect of Na2PO4 Addition on The Setting Reaction Kinetics of an α-tcp Cement, in Le Geros, R.Z., and LeGeros, J.P. (eds), Bioceramic, 11 th ed, World Scientific Publishing, New York,

3 36 Ginebra, M.P., 2008, Calcium Phosphate Bone Cements, in Deb, S (ed), Orthopaedic Bone Cement, Cambridge, Woodhead Publishing Ltd. Greenberg, A.M., dan Prein, J., 2002, Craniomaxillofacial Reconstructive and Corrective Bone Surgery, Springer, New York, hal 124, , 182, 184. Greenwald, A.S., Boden, S.D., Goldberg, V.M., Khan, Y., Laurencin, C.T., Rosier, R.N., 2001, Bone Graft Substitutes : Facts, Fictions, and Applications, J Bone Joint Surg Am, 83: Hak, D.J., 2007, The Use of Osteoconductive Bone Graft Substitutes in Orthopaedic Trauma, J Am Acad Orthop Surg, 15 : Hannink, G., dan Arts, C.J.J., 2011, Bioresorbability, porosity and mechanical strength of bone substitutes: What is optimal for bone regeneration?, Injury Int.J.Care Injured, hal S22. Handley, B.A., Marshall, D.M., Coon, C., 2012, Principles of Engineering, Delmar, New York, 344. Heaney, R.P., 2005, Bone Biology in Health and Disease Shils, M.E., Shike, M., Ross, A.C., Caballero, B., Cousins, R.J. (eds.), Modern Nutrition in Health and Disease, 10 th ed., Lippincott Williams & Wilkins, Philadelphia, Hing, K.A., Annaz, B., Saeed, S., Revell, P.A., Buckland, T., 2005, Microporosity Enhances Bioactivity of Synthetic Bone Graft Substitutes. J Mater Sci-Mater M,16: Irbe, Z., 2012, Influence of Composition of α-tricalcium Phosphate Based Bone Cements on Their Structure and Properties, Disertasi, Riga Technical University, Riga. Ito, A., dan Onuma, K., 1998, Cluster Growth Model for Hydroxyapatite, Chem Master, 10: Ishikawa, K., 2010, Bone Substitute Fabrication Based on Dissolution-Precipitation Reactions, Journal of Materials, 2: Jensen, O.T., Garlini, G., Bilk, D., Peters, F., 2006, Use of Alloplasts for Sinus Floor Graft in Jensen, O.T. (ed.): The Sinus Bone Graft, Quintessence Publishing, Illinois, 206. Kalita, S.J., 2008, Nanostructured Biomaterials in Seal, S. (ed.): Functional Nanostructures: Processing, Characterization, and Applications, Springer, New York, 194.

4 37 Khairoun, I., Boltong, M.G., Driessens, F.C.M., Planell, J.A., 1998, Limited Compliance of some Apatitic Calcium Phosphate Bone Cements with Clinical Requirements, J. Mater Sci: Mater Med, 9; Kim, S.Y., dan Jeon, S.H., 2012, Setting Properties, Mechanical Strength, and In Vivo Evaluation of Calcium Phosphate-Based Bone Cements, Elsevier Journal of Industrial and Engineering Chemistry, 18: Koolman, J., Roehm, K.H., 2005, Color Atlas of Biochemistry, Thieme, New York, 340. Kien, P.T., Maruta, M., Tsuru, K., Matsuya, S., Ishikawa, K., 2010, Effect of Phosphate Solution on Setting Reaction of α-tcp Spheres, J Aus Ceram Soc, 46(2): Lanza, P., Langer, R.,Vacanti, J,P., 2000, Principles of Tissue Engineering, Academic Press, USA, Lee, H.S., Kwon, S.Y., Seo, E.M., Kim, Y.H., Kim, S.S., 2011, Preparation and Characterization of Alpha-Tricalcium Phosphate Cements Incorporated with Polyamino Acids, Macromolecular Research, 19(1): LeGeros, R.Z., Ito, A., Ishikawa, K., Sakae, T., LeGeros, J.P., 2009, Fundamentals of Hydroxyapatite and Related Calcium Phosphates in Basu, B., Katti, D., Kumar, A. (eds.): Advanced Biomaterials: Fundamentals, Processing and Applications, John Wiley & Sons, New Jersey, Ma, P.X., dan Elisseeff, J., 2006, Scaffolding in Tissue Engineering, CRC Press, United States, 256. McCabe, J.F., dan Walls, A.W.G., 2008, Applied Dental Materials, Blackwell Publishing Ltd, Oxford, 7. Moore, W.R., Graves, S.E., Bain, G.I., 2001, Synthetic Bone Graft Substituties, ANZ J Surg, 71: Nandi, S.K., Ghosh, S.K., Kundu, B., De, D.K., Basu, D., 2008, Evaluation of New Porous β-tri-calcium Phosphate Ceramic as Bone Substitute in Goat Model, Small Rumin Res, 75: Nandi, S.K., Roy, S., Mukherjee, P., Kundu, B., De, D.K., Basu, D., 2010, Orthopaedic Applications of Bone Graft and Graft Substitutes : A Review, Indian J Med Res, Hal 15,16. Navarro, M., Michiardi, A., Castano, O., Planell, J.A., 2008, Biomaterials in Orthopaedics. J R Soc Interface, 5:

5 38 Nursalim, P.W, 2013, Perbedaan Kekuatan Kompresi Semen Alpha Tricalcium Phosphate (α-tcp) dengan Penggunaan Larutan Disodium Hydrogen Phosphate (Na2HPO4) dan Sodium Dihydrogen Phosphate (NaH2PO4), Skripsi, Fakultas Kedokteran Gigi Universitas Gadjah Mada, Yogyakarta, hal. 31. Oda, M., Takeuchi, A., Lin, X., Matsuya, S., Ishikawa, K., 2008, Effects of Liquid Phase on Basic Properties of α-tricalcium Phosphate-Based Apatite Cement, Dental Materials Journal, 27(5): Oktavia, Nova, 2015, Sistematika Penulisan Karya Ilmiah, Deepublish, Yogyakarta, 64. Santos, L.A., Carrodeguas, R.G., Boschi, A.O., Arruda, A.C.F., 2003, Dual-Setting Calcium Phosphate Cement Modified with Ammonium Polyacrylate, Artif Organs, 27(5); Shigaku, S., dan Katsuyuki, F., 2005, Beta-Tricalcium Phosphate as A Bone Graft Substitute, Jikeikai Med J, 52: Sumardjo, Damin, 2009, Pengantar Kimia: Buku Panduan Kuliah Mahasiswa Kedokteran dan Program Strata 1 Fakultas Bioeksakta, EGC, Jakarta, 504. Takahashi, Y., Fujishiro, S., Yin, T., Sato., 2004, Preparation and Compressive Strength of α-tricalcium Phosphate Based Cement Dispersed with Ceramic Particles, Ceram.Int. 30: Tsuji, R.K., Jorgetti, V., Bento, R.F., Neto, R.V.B., 2008, Use of Alpha-Tricalcium Phosphate Bone Cements in the Surgical Treatment of Mastoid Cavity, Intl. Arch. Otorbinolaryngol, 12(3): Vishwakarma, A., Sharpe, P., Shi, S., Ramalingam., 2015, Stem Cell Biology and Tissue Engineering in Dental Sciences, Elsevier, Oxford, 461. Vigorita, V.J., 2008, Orthopaedic Pathology, Lippincott Williams and Wilkins, China, 760. Walker, R, 2005, The Human Skeleton, Smart Apple Media, Minnesota, 4. Xu, H.H.K., Carey, L.E., Simon, C.G., Takagi, S., Chow,L.C., 2007, Premixed Calcium Phosphate Cements: Synthesis, Physical Properties, and Cell Cytotoxicity, Dent Mater, 23(4):

6 Zhang, J., Liu, W., Schnitzler, V., Tancret, F., Bouler, J.M., 2014, Calcium Phosphate Cements for Bone Substitution: Chemistry, Handling and Mechanical Properties, Acta Biomaterialia, 10:

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