Bone substitutes in guided bone regeneration
DOI:
https://doi.org/10.59334/ROV.v1i22.286Keywords:
Membranes, grafts, oral cavity, bone defects classificationAbstract
It will be shown the different types of bone substitutes used in oral cavity membranes as well as some remarks of each one. It includes the University of Cologne in Germany classification of bone defects from wich it can be suggested the use of bone substitutes and/or combination or autologous bone, depending on the defect classification.
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References
Albee, F.H., ( 1920). Studies in bone growth-triple calcium phophates as stimulus to osteogenesis. Ann surg;71:3209. https://doi.org/10.1097/00000658-192001000-00006
Calvo, R., Figueroa, D., Díaz-Ledezma, C., Vaisman, A., Figueroa, F., (2011). Aloinjertos óseos y la función del banco de huesos. Revista Médica de Chile, Vol. 139, No 5, Santiago, mayo. https://doi.org/10.4067/S0034-98872011000500015
Fetner, A.E., Hartigan, M., Low, S.B., (1994). Periodontal repair using Perioglass in non human primates: Clinical and histological observations. Compend Cont Educ dent;5:932-8.
Folgeman et ál, (2012). Radionuclide and hybrid bone imaging, DOI 10.1007/978-3-642-02400-9_2. Springer Verlag Berlin Heidelberg. PP 31.
Froum, S., Tarnow, D., Wallace, S., Jalbout, Z., Choon Cho, S., Rohrer, M., Prasad, H., (2005). The use of a mineralizaed allograft for sinus augmentation: An interim histological case report from a prospective clinical study en Compendium Vol 26. No.4, Abril
Gauthier, O., Boix, D., Grimandi, G., Aguado, E., Bouler, J.M., Weiss, P., Daculsi, G.. (1999). A new injectable calcium phosphate biomaterial for immediate bone filling or extraction sockets: A preliminary study in dogs. J Periodontology; 70(4):375-83. https://doi.org/10.1902/jop.1999.70.4.375
Kim et ál., (2006). A poly (lactide-co-glycolide)/hydroxyapatite composite scaffolds for bone tissue engineering. Biomaterials 271399-1409. https://doi.org/10.1016/j.biomaterials.2005.08.016
Mahantesha, K.S., Shobha, R., et ál. (2013) Clinical and radiographic evaluation of demineralized bone matrix (grafton) as a bone graf materail int eh treatment of human periodontal intraosseous defect, Journal of Indian Societ of Periodontology. Vol 17, Issue 4, Jul-Agosto. https://doi.org/10.4103/0972-124X.118323
Marín Ruiz, M., San Hipólito Marín, L., Belarra Arenas, C., Martín Gómez, F., Martínez-González JM. (2009). Injertos sustitutos no óseos. Aportaciones del ácido poliláctico y poliglicólico en Avances en Periodoncia e implan-tología.;21,1:45-52. https://doi.org/10.4321/S1699-65852009000100006
McEwen, W., (1881). Observation concerning transplantation of bone. Illustrated by a case of inter-human osseous transplantation where over by two thirds of the shaft of the humerus was restored. Proc Roy Soc London,; 32: 232-47. https://doi.org/10.1098/rspl.1881.0025
Misch, C.E., (1987). Maxillary Sinus augmentation for endosteal implants: organized alternative treatment plans. Int. J. oral Implantology.;4:49-58
Muñoz Corcuera, M., Trullenque Eriksson, A. (2008). Comparación entre distintos sustitutos óseos utilizados para procedimientos de elevación de seno maxilar previo a la colocación de implantes dentales. Avances en Periodoncia e implantalogía.; 20,3: 155-164. https://doi.org/10.4321/S1699-65852008000300003
Nyman, S., Lindhe, J., Karring, T., Rylander, H., (1982). New attachment formation as a result of controlled tissue regeneration. J Clin Periodontol,9-290-296. https://doi.org/10.1111/j.1600-051X.1982.tb02095.x
Peñarrocha Diago, M., (2010). Implantología oral , Editorial Ars Medica, , España, pp133-134.
Piattelli, M. et ál, (1999). International journal of oral and maxillofacial implants 14,;835-840
Rocha, F., de Oliveira, G.R., Olate, S., de Alergaria-Barbosa, J.R., (2010). Consideraciones clínicas en la obtención de ijertos óseos intraorales. Técnica quirúrgica y evaluación de las complicaciones. En: Avances en Periodoncia e implantologia;22,2: 71-76. https://doi.org/10.4321/S1699-65852010000200002
Rothamel, D., Nickening, A., Happe, A., Zoeller, J., (2013). Die Koelner Defekstklassification des Alveolarforsatz. Universitaets Klinikum Kolen.
Sartori, S. et ál, (2003). Clinical implants. Rest. 14,; 369-372. https://doi.org/10.1034/j.1600-0501.2003.140316.x
Shepers, E., Ducheyne. P., (1997). Bioactive glass particles fonarrow size range for the treatment of oral bone defects: A 1-24 experiment with several materials and particle size ranges. J of Oral Rehabilitation;24:171-81. https://doi.org/10.1111/j.1365-2842.1997.tb00311.x
Schoepf, C., (2006). Allograft safety: Efficacy of the tutoplast process. International magazine of oral implantolo-gy, Issue 1/06, Volumen 7,.
Schopper, C., Moser, D., Wnashitz, F., Watzinger, F., Lagogiannis, G., Spassova, E., et ál. (1999). Histomorphological findings on human bone samples six months after bone augmentation of the maxillary sinus with Algipore. J Long term Eff Med Implants.;9(3):203-13.
Szabó, G., Huys, L., Coulthard, P., Maiorana, C., Garagiola, U., Barabás, J., Németh, Z., Hrabák, K., Suba, Z., (2005). A prospective multicenter randomized clinical trial of autogenous bone versus beta-tricalcium phosphate graft alone for bilateral sinus elevation: histologic and histomorphometric evaluation. Int J Oral maxillfac Implants; 20(3):371-81
Szabó, G., Suba, Z., Hrabáb, K., Barabás, J., Németh, Z.. (2001). Autogenous bone versus beta-tricalcium phophate graft alone for bilateral sinus elevations (2-and 3-dimensional computed tomographic, histologic, and histomor-phometric evaluations): preliminary results. Int J Oral Maxillofac Implants:16(5): 681-92
Tortolini, P., Rubio, S., (2012). Diferentes alternativas de rellenos óseos, en Avances en Periodoncia e implantología;24,3:133-138. https://doi.org/10.4321/S1699-65852012000300003
Weibrich, G., et ál. (2000). Mund Kiefer Gesichtschirurgie Zeitschrief, 4,;148-152. https://doi.org/10.1007/s100060050187
Zijderveld, S.A., Zerbo, I.R., van den Bergh, J.P., Schulten, E.A., ten Bruggenkate, C.M., (2005). Maxillary sinus floor augmentatios using a beta-tricalcium phosphate (Cerasorb) alone compared to autogenous bone graft. Int J Oral Maxillofac Implants; 20(3):432-40
Zitzman, N.U., et ál (2001). Intenational Journal of oral and maxillofacial implants, 16,;355-366
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