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7DAFTAR PUSTAKA Aly, A., Agameia, A., Eldesouky, A., Shara, M., 2011, Scaffold Development and Characterization Using CAD System, Am. J. Biomed. Sci, 3, 4, 268-277. Ambarwati, R., 2013, Studi Fabrikasi Dan Uji Mekanik Scaffold Hidroksiapatit Dengan Binder Kitosan, Skripsi, Fakultas MIPA, Universitas Gadjah Mada, Yogyakarta. Atala A. dan Mooney, D. J., 1997, Synthetic Biodegradable Polymer scaffold, Birkhauser, Boston. Askarzadeh, K., Orang, F., dan Moztarzadeh, F., 2005, Fabrication and Characterization of a Porous Composite scaffold Based on Gelatin and Hydroxyapatite for Bone Tissue Engineering, Iranian Polymer Journal, 6, 511-520. Bache, H., 1970, Model for Strength of Brittle Materials Built Up of Particles Joined at Points of Contact, Journal of The American Ceramic Society , 53, 12, 654-658 Balan, A., Moise, A., Grigoriu, A., 2010, A Comparative Rheological Study Of Several Colloidal Systems Based On Cellulose Derivatives, Cellulose Chem. Technol ., 44, 231-238 . Barrère, F., Blitterswijk, C. dan Groot, K., 2006, One Regeneration: Molecular And Cellular Interactions With Calcium Phosphate Ceramics, International Journal of Nanomedicine, 3, 317-332. Chen, Q., Roether, J., Boccaccini, A., 2008, Tissue Engineering Scaffolds from Bioactive Glass and Composite Materials, Topics in Tissue Engineering, 4, 1-27. Christian, J. A., Paul, K., Fabrication of Ceramic Microscale Structures, J. Am. Ceram. Soc., 90, 9, 2779 – 2783. Cimdina, L. dan Borodajenko, N., 2012, Research of Calcium Phosphates Using Fourier Transform Infrared Spectroscopy, Infrared Spectroscopy- Materials Science, Engineering and Technology , Intech, Shanghai. Das, S, 2011, Study of Decomposition Behaviour of Binders And The Effect of Binder Type on Strength And Density of Alumina Samples, Skripsi, Department of Ceramic Engineering National Institute of Technology Rourkela, Rourkela. Eliaz, N., Kopelovitch, W., Burstein, L., Kobayashi, E., Hanawa, T., 2008, Electrospun Nanofibers Of Hydroxyethyl Cellulose As Scaffolds For Tissue Engineering, Wiley Periodicals Inc., London. 56

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7DAFTAR PUSTAKA

Aly, A., Agameia, A., Eldesouky, A., Shara, M., 2011, Scaffold Development and Characterization Using CAD System, Am. J. Biomed. Sci, 3, 4, 268-277.

Ambarwati, R., 2013, Studi Fabrikasi Dan Uji Mekanik Scaffold Hidroksiapatit Dengan Binder Kitosan, Skripsi, Fakultas MIPA, Universitas Gadjah Mada, Yogyakarta.

Atala A. dan Mooney, D. J., 1997, Synthetic Biodegradable Polymer scaffold, Birkhauser, Boston.

Askarzadeh, K., Orang, F., dan Moztarzadeh, F., 2005, Fabrication and Characterization of a Porous Composite scaffold Based on Gelatin and Hydroxyapatite for Bone Tissue Engineering, Iranian Polymer Journal, 6, 511-520.

Bache, H., 1970, Model for Strength of Brittle Materials Built Up of Particles Joined at Points of Contact, Journal of The American Ceramic Society, 53, 12, 654-658

Balan, A., Moise, A., Grigoriu, A., 2010, A Comparative Rheological Study Of Several Colloidal Systems Based On Cellulose Derivatives, Cellulose Chem. Technol ., 44, 231-238 .

Barrère, F., Blitterswijk, C. dan Groot, K., 2006, One Regeneration: Molecular And Cellular Interactions With Calcium Phosphate Ceramics, International Journal of Nanomedicine, 3, 317-332.

Chen, Q., Roether, J., Boccaccini, A., 2008, Tissue Engineering Scaffolds from Bioactive Glass and Composite Materials, Topics in Tissue Engineering, 4, 1-27.

Christian, J. A., Paul, K., Fabrication of Ceramic Microscale Structures, J. Am. Ceram. Soc., 90, 9, 2779 – 2783.

Cimdina, L. dan Borodajenko, N., 2012, Research of Calcium Phosphates Using Fourier Transform Infrared Spectroscopy, Infrared Spectroscopy-Materials Science, Engineering and Technology, Intech, Shanghai.

Das, S, 2011, Study of Decomposition Behaviour of Binders And The Effect of Binder Type on Strength And Density of Alumina Samples, Skripsi, Department of Ceramic Engineering National Institute of Technology Rourkela, Rourkela.

Eliaz, N., Kopelovitch, W., Burstein, L., Kobayashi, E., Hanawa, T., 2008, Electrospun Nanofibers Of Hydroxyethyl Cellulose As Scaffolds For Tissue Engineering, Wiley Periodicals Inc., London.

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