• Tidak ada hasil yang ditemukan

daftar pustaka

N/A
N/A
Protected

Academic year: 2023

Membagikan "daftar pustaka"

Copied!
4
0
0

Teks penuh

(1)

39 DAFTAR PUSTAKA

Adrianto, H., 2011. Peran Hidroksiapatit sebagai Bone Graft Dalam Proses Penyembuhan Tulung. STOMATOGNATIC-Jurnal Kedokteran Gigi, Volume 8(2), pp. 118-121.

Akter, F. & Ibanez, J., 2016. Bone and Cartilage Tissue Engineering. Tissue Engineering Made Easy, pp. 77-97.

Amini, A., Laurencin, C. & Nukavarapu, S., 2012. Bone Tissue Engineering:

Recent Advances and Challanges. Crit. Rev. Biomed. End., Volume 40 (5), pp. 363- 408.

Barralet JE, et al., 2005. On the Effect of X-Ray Irradiation on The Deformation and Fracture Behavour of Human Cortical Bone. J. Mater Sci Mater Med, Volume 16(6), pp. 515-519.

Cameron, 2006. Fisika Tubuh Manusia. Jakarta: EGC.

Daane, S., 2010. Alloplastic Implantation. Plastic Surgery Secrets Plus, pp. 28-32.

Familien, T., 2011. Compression Analysis of Pharmaceutical Powders: Assessment of Mechanical Properties and Tablet Manufacturability Prediction.

Fu, Q., Saiz, E., Rahaman, M. & Tomsia, A., 2011. Bioactive Glass Scaffolds for Bone Tissue Engineering: State of The Art and Future Perspective. Mater. Sci. Eng., Volume 31 (7), pp. 1245-1256.

Huiskes, R., Weinans, H. & Rietbergen, B., 1992. The relationship between stress shielding and bone resorption around total hip stems and the effects of flexible materials. Clinical Orthopaedics and Related Research, Volume 274, pp. 124-134.

Humala, N. L., 2009. Simulasi Sistem Permodelan Dan Analisis. Medan: USU Press.

I. Sabree, J.E. Gough & B. Derby, 2015. Mechanical properties of porous ceramic scaffold : influence of internal dimensions. ELSEVIER, 41(Ceramic International), pp. 8425-8432.

I. Sopyan, M. M. S. R. K. K., 2007. Porous Hydroxyapatite for Artificial Bone Applications. Science and Technology of Advantage Materials, Volume 8, pp. 116- 123.

(2)

40 Irawan, B., Indrani, D. J. & Milla, L. E., 2018. Sintesis Dan Uji Porositas Scaffold Hidroksiapatit/Alginat. ODONTO Dental Journal, Volume 5.

Isworo, H. & Ansyah, P. R., 2018. Metode Elemen Hingga. Banjarmasin: Program Studi Teknik Mesin Universitas Lambung Magkurat.

Karuppudaiyan, S., D Kingsly Jeba Singh & Vora Mani Santosh, 2018. Finite element analysis of scaffold for large defect in femur. 2nd International conference on Advances in Mechanical Engineering (ICAME 2018), Volume 402 .

Kasten, P. et al., 2008. Porosity and pore size of beta-tricalcium phospate scaffold can influence protein production and osteogenic differentation of human mesenchymal stem cells: an in vitro and in vivo study. Acta Biomater, Volume 4 (6), pp. 1904-1915.

Kehoe, S., 2008. Optimisation of hydroxyapatite (HAp) for orthopaedic application via the chemical precipitation technique. Doctoral dissertation, Dublin City University.

Khoirudin, M., Yelmida & Zultinar, 2013. Sintesis dan Karakterisasi Hidroksiapatit (HAp) dari Kulit Kerang Darah (Anadara Grosa) dengan Proses Hidrotermal. JOM FTEKNIK, Volume 2.

Khrisnamurithy, G., 2013. A review on hydroxyapatite-based scaffold as a potential bone graft substitute for bone tissue engineering applications. JUMMEC.

Kurniadi, D., Umroh, B. & Darianto, H. A. S., 2019. Simulasi Kekuatan Mekanis Material Komposit Tempurung Kelapa Menggunakan Metode Elemen Hingga.

Journal of Mechanical Engineering, Manufactures, Material and Energy, Volume 3.

Kusrini, E. a. S. M., 2012. Characterization of x-ray diffraction and electron spin resonance: Effects of sintering time and temperature on bovine hydroxyapatite..

adiation Physics and Chemistry, Volume 81(2), pp. 118-125.

Laurencin, C. a. D. M. e., 2014. Natural and Synthetic Biomedical Polymers.

Newnes.

Lin, L. et al., 2007. The Mechanical Properties of Bone Tissue Engineering Scaffold Fabricating Via Selective Laser Sintering. LSMS, pp. 146-152.

Miao, S. C. K. W. W. D. P. S. G. H. G. Y. W. a. Z. S., 2008. Fabrication and evaluation of Zn containing fluoridated hydroxyapatite layer with Zn release ability

(3)

41 Fabrication and evaluation of Zn containing fluoridated hydroxyapatite layer with Zn release ability. Acta biomaterialia, Volume 4(2), pp. 441-446.

Milan, J.-L., Planell, J. A. & Lacroix, D., 2010. Simulation of Bone Tissue Formation Within a Porous Scaffold Under Dynamic Compression.

Murphy, C. & Haugh, M., 2010. The Effect Of Mean Pore Size On Cell attachment, Proliferation And Migration In Collagen Glycosaminoglycan Scaffold For Tissue Engineering. 31(3) ed. s.l.:s.n.

Negrila, C. P. M. I. S. a. P. D., 2018. Development of zinc-doped hydroxyapatite by sol-gel method for medical applications. Molecules, Volume 23(11, p. 2986.

Oshida , Y., 2015. Hydroxyapatite, Synthesis and Aplication. LLC ed. s.l.:New York : Momentum Press.

Paxton, M. J., 1986. Endocrinology : Biological and Medical Perspectives.

Dubuque: Iowa : WC. Brown Publisher.

Ren, F. X. R. G. X. a. L. Y., 2009. Characterzation and structural analysis of zinc- substitued hydroxiapatite. 5(8) ed. s.l.:Acta Biomaterialia.

Rodríguez-Vázquez, M. V.-R. B. R.-Z. R. S.-K. D. a. Q.-O. L., 2015. Chitosan and its potential use as a scaffold for tissue engineering in regenerative medicine.

BioMed research international.

Roosa, S. et al., 2010. The Pore Size of Polycaprolactone Scaffolds has Limited Influence on Bone Regeneration in an In Vivo Model. J. Biomed. Mater. Res A., Volume 92 (1), pp. 359-368.

Samijayani, O. N. & Astharini, D., 2012. Penerapan Metode Simulasi Pra- Praktikum Menggunakan Graphic User Interface (GUI) Dan FDATOOL, Matlab.

Jurnal Al-Azhar Indonesia Seri Sains Dan Teknologi, Volume 1, p. 186.

Sanz-Herrera, J. A. & Reina-Romo, E., 2019. Continum Modeling and Simulation in Bone Tissue Engineering. Escuela Técnica Superior de Ingeniería, Universidad de Sevilla.

Suchanek, W. & Yoshimura, M., 1998. Processing and properties of hydroxyapatite-based biomaterials for use hard tissue replacement implants. J.

Mater Res, Volume 13, pp. 94-117.

(4)

42 Sungkono , I., Irawan, H. & Patriawan, D. A., 2019. Analisis Desain Rangka dan Penggerak Alat Pembulat Adonan Kosmetik Sistem Putaran Eksentrik Menggunakan Solidwork.

Suryadi, 2011. Sintesis dan Karakterisasi Biomaterial Hidroksiapatit dengan proses pengendapan Kimia basah [tesis]. Depok: Universitas Indonesia.

Syaifudin, 2001. Fungsi Sistem Tubuh Manusia. In: Jakarta: Widya Medika.

Tariverdian, T. S. F. G. M. a. M. M., 2019. Scaffold For Bone Tissue Engineering.

189-209 ed. s.l.:Handbook of Tissue Engineering Scaffold : Volume One.

Taylor, M. E., Tanner, K. E., Freeman, M. A. R. & Yettram, A. L., 1996. Stress and Strain Distribution within The Intact Femur Compression or Bending. Medical Engineering & Physics, Volume 18(2), pp. 122-131.

Thian, E. K. T. K. Y. L. P. C. C. H. B. a. A. M., 2013. Zinc-substituted hydroxyapatite: a biomaterial with enhanced bioactivity and antibacterial properties. Journal of Materials Science: Materials in Medicine, Volume 24(2), pp.

437-445.

Trisnawati, M., Izak R., D. & Siswanto, 2014. Sintesis dan Karakterisasi Bone Graft Hidroksiapatit-Alginat dengan Metode Ex-Situ.

Vasireddi, R. & Basu, B., 2015. Conceptual Design of Three-Dimensional Scaffolds of Powder-Based Materials for Bone Tissue Engineering Applications.

Rapid Prototyping Journal, 21(6), pp. 716-724.

Wang, L. K. J. S. C. L. D. C. Y. &. J. Z., 2017. Mapping porous microstructure to yield desired mechanical properties for application in 3D printed bone scaffolds and orthopaedic implants. 133(Materials & Design), pp. 62-68.

Wang, P. et al., 2014. bone tissue engineering via nanostructural calcium phospate biomaterials and stem cells. Bone Res 2., Volume 14017.

Warastuti, Y. a. A. B., 2018. Sintesis dan karakterisasi pasta injectable bone substitute iradiasi berbasis hidroksiapatit. Jurnal Ilmiah Aplikasi Isotop dan Radiasi, p. 7(2).

Yuehuei, H. A. & Robert, A. D., 2000. Mechanical Testing Of Bone And The Bone- Implant Interface. United States of America: CRC PRESS.

Zeeshan Sheikh, S. N., 2015. Biodegradale Materials For Bone Repair and Tissue Engineering Applications. Canada: University of Toronto.0

Referensi

Dokumen terkait

94 Journal homepage: ht t p:/ / j ur na l .umsu.a c .id/ inde x.php/ ET LiJ Development of Project-Based Learning Models for Teaching Accounting English in Higher Education

“Preparation and Characterization of Porous Hydroxyapatite and Alginate Composite Scaffolds for Bone Tissue Engineering.” International Journal of Applied Pharmaceutics 9 2: 98–102..