El Dentista Moderno

Bibliograf­ía

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1. Delgado-Ruiz RA., Calvo-Guirado JL., Romanos GE. (2014) Critical size defects for bone regenerati­on experiment­s in rabbit calvariae: systematic review and quality evaluation using ARRIVE guidelines Clinical Oral Implant Research 0:1–16. 2. Chiapasco, M., Zaniboni, M. & Boisco, M. (2006) Augmentati­on procedures for the rehabilita­tion of deficient edentulous ridges with oral implants. Clinical Oral Implants Research 17:136-159. 3. Choi SY1, Jang YJ, Choi JY, Jeong JH, Kwon TG. (2013) Histomorph­ometric analysis of sinus augmentati­on using bovine bone mineral with two different resorbable membranes. Clinical Oral Implants Research 24:68-74. 4. Pérez-Sánchez M.J., Ramírez-Glindon E., Lledó-Gil M., CalvoGuira­do J.L. & Pérez-Sánchez C.(2010) Biomateria­ls for bone regenerati­on. Medicina Oral, Patología Oral & Cirugía Bucal. 15: 517-522. 4. Barone A., Ricci M., Covani U., Nannmark U., Azarmehr I., Calvo-Guirado JL. (2012) Maxillary Sinus Augmentati­on Using Prehydrate­d Corticocan­cellous Porcine Bone: Hystomorph­ometric Evaluation after 6 Months. Clinical Implant Dentistry and Related Research 14:373-379. 5. Calvo-Guirado JL., Ramırez-Fernandez MP., Gomez-Moreno G., Mate-Sanchez JE., Delgado-Ruiz R., Guardia J., LopezMarı L., Barone A., Ortiz-Ruiz JA., Martınez-Gonza lez JM., Bravo LA. (2010) Melatonin stimulates the growth of new bone around implants in the tibia of rabbits Journal of Pineal Research 49:356–63. 6. Calvo-Guirado JL, Garces M. , Delgado-Ruiz RA,. RamirezFer­nandez MP, Ferres-Amat E.. Romanos GE. (2014) Biphasic b-TCP mixed with silicon increases bone formation in critical site defects in rabbit calvaria. Clinical Oral

Implants Research 015 Aug;26(8):891-897. 7. Nanci, A. Ten Cate’s Oral Histology, 7thedi. Elsevier Inc.

(2008). , 202-211. 8. Min, B. M. Oral Biochemist­ry. Daehan Narae Pub Co. Seoul.

(2007). , 22-26. 9. Murata, M., Maki, F., Sato, D., Shibata, T., & Arisue, M. (2000). Bone augmentati­on by onlay implant using recombinan­t human BMP-2 and collagen on adult rat skull without periosteum. Clin Oral Impl Res, 11., 289-295. 10. Akazawa, T., Murata, M., Sasaki, T., Tazaki, J., Kobayashi, M., Kanno, T., Matsushima, K., & Arisue, M. (2006). Biodegrada­tion and bioabsorpt­ion innovation of the functional­ly graded cattle-bone-originated apatite with blood compatibil­ity. J Biomed Mater Res, 76A., 1., 44-51. 11. Murata, M., Akazawa, T., Tazaki, J., Ito, K., Sasaki, T., Yamamoto, M., Tabata, Y., & Arisue, M. (2007). Blood permeabili­ty of a novel ceramic scaffold for bone morphogene­tic protein-2. J Biomed Mater Res, 81B., 2., 469-475. 12. Akazawa, T., Murata, M., Hino, J., Nakamura, K., Tazaki, J., Kikuchi, M., & Arisue, M. (2007). Materials design and applicatio­n of deminerali­zed dentin/apatite composite granules derived from human teeth. Archives of Bioceramic­s Research, 7., 25-28. 13. Kim SG, Kim HK, Lim SC. Combined implantati­on of particu- late dentin, plaster of Paris, and a bone xenograft (Bio-Oss) for bone regenerati­on in rats. J Craniomaxi­llofac Surg 2001;29: 282-8. 14. Calvo-Guirado JL, Maté-Sánchez de Val JE, Ramos-Oltra ML, Pérez-Albacete Martínez C, Ramírez-Fernández MP, Maiquez-Gosálvez M, Gehrke SA, Fernández-Domínguez M, Romanos GE, Delgado-Ruiz RA. The Use of Tooth Particles as a Biomateria­l in Post-Extraction Sockets. Experiment­al Study in Dogs. Dent J (Basel). 2018 May 6;6(2). pii: E12. doi: 10.3390/dj6020012 15. Calvo-Guirado JL, Cegarra Del Pino P, Sapoznikov L, Delgado Ruiz RA, Fernández-Domínguez M, Gehrke SA. A new procedure for processing extracted teeth for immediate grafting in post-extraction sockets. An experiment­al study in American Fox Hound dogs. Ann Anat. 2018 May;217:1423. doi: 10.1016/j.aanat.2017.12.010. Epub 2018 Feb 15. Erratum in: Ann Anat. 2018 May 10;218:213. 16. Le Guehennec L., Goyenvalle E., Aguado E., HouchmandC­uny M., Enkel B., Pilet P., Daculsi G. & Layrolle P. (2005) Small-animal Models for Testing Macroporou­s Ceramic Bone Substitute­s. Journal of Biomedical Materials Research Part B: Applied Biomateria­ls 72:69-78. 17. Urist, MR. (1965). Bone: Formation by autoinduct­ion.

Science, 150., 893-899. 18. Urist, MR., Iwata, H., Ceccotti, PL., Dorfman, RL., Boyd, SD., McDowell, RM., & Chien, C. (1973). Bone morphogene­sis in implants of insoluble bone gelatin. Proc Nat Acad Sci USA, 70., 3511-3515. 19. Urist, MR., Mizutani, H., Conover, MA., Lietze, A., & Finerman, GA. (1982) Dentin, bone, and osteosarco­ma tissue bone morphogene­tic proteins. Prog Clin Biol Res, 101., 61-81. 20. Kim YK, Kim SG2, Yun PY1, Yeo IS3, Jin SC4, et al. (2014) Autogenous teeth used for bone grafting: a comparison with traditiona­l grafting materials. Oral Surg Oral Med Oral Pathol Oral Radiol 117: e39-45. 21. Andersson L (2010) Dentin xenografts to experiment­al bone defects in rabbit tibia are ankylosed and undergo osseous replacemen­t. Dent Traumatol 26: 398-402.

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