Диссертация (1139640), страница 39
Текст из файла (страница 39)
J. – 2005. –Vol. 24, №3. – P. 311-314.282. Mas-Moruno C., Garrido B., Rodriguez D., et al. Biofunctionalizationstrategies on tantalum-based materials for osseointegrative applications // J. Mater.Sci. Mater. Med. 2015; 26(2): 109283. McCrea S.J.J. An analysis of patient perceptions and expectationsto dental implants: Is there a significant effect on long-term satisfaction levels? //Int. J.
Dent. – 2017. – e8230618.284. Mendonca G., Mendonca D.B., Aragao F.J., Cooper L.F. Advancingdental implant surface technology – from micron – to nanotopography //Biomaterials. 2008; 29(28): 3822-3835.285. Misch C.E., Perel M.L., Wang H.L., et al. Implant success, survival,and failure: the International Congress of Oral Implantologists (ICOI) PisaConsensus Conference. Implant Dent. 2008. – Vol. 17, № 1. – P. 5-15.286. Misra R.D., Thein-Han W.W., Pesacreta T.C., et al. Cellular responseof preosteoblasts to nanograined/ultrafine-grained structures // Acta Biomaterialia.2009; 5: 1455–1467.287.
Moraschini V., Poubel L.A., Ferreira V.F., Barboza E.S. Evaluationof survival and success rates of dental implants reported in longitudinal studieswith a follow-up period of at least 10 years: a systematic review // Int. J. OralMaxillofac. Surg. – 2015. – Vol. 44, № 3. – P.
377–388.288. Mouhyi J., Dohan Ehrenfest D.M., Albrektsson T. The periimplantitis: implant surfaces, microstructure, and physicochemical aspects // Clin.Implant Dent. Relat. Res. 2012; 14(2): 170-183.242289. Mueller C.K., Thorwarth M., Schmidt M., et al.
Comparative analysisof osseointegration of titanium implants with acid-etched surfaces and differentbiomolecular coatings // Oral. Surg. Oral. Med. Oral. Pathol. Oral. Radiol. Endod.2011; 112(6): 726-736.290. Mukherjee A., Rotwein P. Akt promotes BMP2-mediated osteoblastdifferentiation and bone development // J. Cell Sci. 2009; 122(Pt 5): 716–726.291. Muller F., Duvernay E., Loup A., et al. Implant-supportedmandibular overdentures in very old adults: a randomized controlled trial // J.Dent.
Res. 2013; 92(Suppl 2): 154S-160S.292. Muller F., Duvernay E., Loup A., Vazquez L., Herrmann F.,Schimmel M. Implant-supported mandibular overdentures in very old adults: arandomized controlled trial. J. Dent. Res. 2013; 92(Suppl 2): 154S-160S.293. Munjal S., Munjal S., Hazari P., et al.
Evaluation of specificallydesigned implants placed in the low-density jaw bones: a clinico-radiographicalstudy // Contemp. Clin. Dent. – 2015. – Vol. 6, №1. – P. 40–43.294. Nayak A.G., Fernandes A., Kulkarni R., et al. Efficacy ofantibacterial sealing gel and O-ring to prevent microleakage at the implantabutment interface: an in vitro study // J. Oral Implantol.
– 2014. – Vol. 40, №1. –P. 11-14.295. Negri M., Galli C., Smerieri A., et al. The effect of age, gender, andinsertion site on marginal bone loss around endosseous implants: results from a 3year trial with Premium Implant System // Biomed Res Int.
2014; 2014: 369051.296. Nevins M., Giannobile W.V., McGuire M.K., et al. Platelet-derivedgrowth factor stimulates bone fill and rate of attachment level gain: results of alarge multicenter randomized controlled trial // J. Periodontol. 2005; 76: 2205–2215.297. Ng F., Boucher S., Koh S., et al. PDGF, TGF-beta, and FGFsignaling is important for differentiation and growth of mesenchymal stem cells(MSCs): transcriptional profiling can identify markers and signaling pathways243important in differentiation of MSCs into adipogenic, chondrogenic, andosteogenic lineages // Blood.
2008; 112: 295–307.298. Nickel J., Spilker R., Iwasaki L., et al. Static and dynamic mechanicsof the TMJ: plowing forces, joint load, and tissue stress // Orthod. Craniofac. Res.– 2009. – Vol. 12, №3. – P. 159–167.299. Nicu E.A., Van Assche N., Coucke W., et al. RCT comparingimplants with turned and anodically oxidized surfaces: a pilot study, a 3-yearfollow-up // J. Clin. Periodontol. 2012; 39(12): 1183–1190.300. Nienkemper M., Handschel J., Drescher D. Systematic review ofmini-implant displacement under orthodontic loading // Int J Oral Sci. 2014March; 6(1): 1–6.301.
Nishimura I. Genetic networks in osseointegration // J. Dent.Res. 2013; 92(12 Suppl): 109S–118S.302. NovochadovV.V., Krylov P.A. Productiontechnology andphysicochemical properties of composition containing surfactant proteins. Eur. J.Mol. Biotech. 2016. 4(2): 77–84.303. NtounisA., GeursN., VassilopoulosP., ReddyM.Clinicalassessment of bone quality of human extraction sockets after conversionwith growth factors // Int.
J. Oral Maxillofac. Implants. 2015; 30(1): 196-201.304. Ogle O.E. Implant surface material, design, and osseointegration //Dent. Clin. North Am. 2015; 59(2): 505-520.305. Ortolani E., Guerriero M., Coli A., et al. Effect of PDGF, IGF-1 andPRP on the implant osseointegration. An histological and immunohistochemicalstudy in rabbits // Ann.
Stomatol. (Roma). 2014; 5(2): 66-68.306. Pachauri P., Bathala L.R., Sangur R. Techniques for dentalimplant nanosurface modifications // J. Adv. Prosthodont. 2014; 6(6): 498–504.307. Padial-Molina M, Suarez F, Rios HF, Galindo-Moreno P, WangHL. Guidelines for the diagnosis and treatment of peri-implant diseases. Int JPeriodontics Restorative Dent. 2014.
– Vol. 34, № 6. – P. 102-111.244308. Pae A., Lee H., Noh K., Woo Y.-H. Cell attachment and proliferationof bone marrow-derived osteoblast on zirconia of various surface treatment // J.Adv. Prosthodont. 2014; 6(2): 96–102.309. Park H.S., Lee Y.J., Jeong S.H., et al. Density of the alveolar andbasal bones of the maxilla and the mandible // Am. J. Orthodont. Dentofac.Orthop. – 2008. – Vol.133. – P. 30-37.310. Park I.-P., Kang T.-J., Heo S.-J., et al. Investigation of anodizedtitanium implants coated with triterpenoids extracted from black cohosh: ananimal study // J.
Adv. Prosthodont. – 2014. – Vol. 6, № 1. – P. 14–21.311. Park J.H., Olivares-Navarrete R., Wasilewski C.E., et al. Use ofpolyelectrolyte thin films to modulate Osteoblast response to microstructuredtitanium surfaces // Biomaterials. 2012; 33(21): 5267–5277.312. Passoni B.B., Dalago H.R., Schuldt Filho G., et al.
Does the numberof implants have any relation with peri-implant disease? // Appl Oral Sci. –2014. – Vol. 22, № 5. – P. 403–408.313. Patel Z.S., Young S., Tabata Y., et al. Dual delivery of an angiogenicand an osteogenic growth factor for bone regeneration in a critical size defectmodel // Bone. – 2008. – Vol. 43. – P. 931–940.314.
Petrie T.A., Reyes C.D., Burns K.L., Garcia A.J. Simple applicationof fibronectin-mimetic coating enhances osseointegration of titanium implants // J.Cell Mol. Med. – 2009. – Vol. 13, № 8B. – P. 2602-2612.315. Porter S.R., Al-Johani K., Fedele S., Moles D.R.
Randomisedcontrolled trial of the efficacy of HybenX in the symptomatic treatment ofrecurrent aphthous stomatitis // Oral Dis. – 2009. – Vol. 15, № 2. – P. 155–161].316. Prati A. J., Casati M. Z., Ribeiro F. V., et al. Release of bone markersin immediately loaded and nonloaded dental implants: a randomized clinical trial// J.
Dent. Res. – 2013. – Vol. 92 (12 Suppl.). – 161S–167S.317. Pye A.D., Lockhart D.E.A., Dawson M.P., et al. A review of dental245implants and infection // J. Hosp. Infect. – 2009. – Vol. 72, № 2. – P. 104–110.318. Raikar S., Talukdar P., Kumari S., et al. Factors affecting the survivalrate of dental implants: A retrospective study // J. Int. Soc. Prev. CommunityDent. – 2017. – Vol. 7, № 6. – P. 351–355.319. Ramanauskaite A., Juodzbalys G. Diagnostic principles of periimplantitis: a systematic review and guidelines for peri-implantitis diagnosisproposal // J. Oral Maxillofac.
Res. – 2016. – Vol. 7, № 3. – e8.320. Reeves T.E., Mah P., McDavid W.D. Deriving Hounsfield unitsusing grey levels in cone beam CT: a clinical application // Dentomaxillofac.Radiol. – 2012. – Vol. 41, № 6. – P. 500–508.321. Ribeiro A.R., Oliveira F., Boldrini L.C., et al. Micro-arc oxidation as atool to develop multifunctional calcium-rich surfaces for dental implant applications// Mater. Sci. Eng. C. Mater. Biol.
Appl. – 2015. – Iss. 54. – P. 196-206.322. Ribeiro-Rotta R.F., de Oliveira R.C., Dias D.R., et al. Bone tissuemicroarchitectural characteristics at dental implant sites part 2: correlation withbone classification and primary stability // Clin. Oral Implants Res. – 2014. – Vol25, № 2. – P. 47–53.323. Romero-Pérez María J., Mang-de la Rosa María R., López-JimenezJulián, et al. Implants in disabled patients: A review and update Med Oral PatolOral Cir Bucal. 2014 September; 19(5): e478–e482.324.
Rosa V., Della Bona A., Neves B.C. Tissue engineering: from researchto dental clinics // Nör. Dent. Mater. – 2012. – Vol. 28, №4. – P. 341–348.325. Roze J., Babu S., Saffarzadeh A. et al. Correlating implant stability tobone structure // Clin. Oral Implants Res. – 2009. – Vol. 20, № 10. – P. 1140–1145.326. Rupp F., Gittens R.A., Scheideler L., et al. A review on thewettability of dental implant surfaces: theoretical and experimental aspects // ActaBiomater.
– 2014. – Vol. 10, №7. – P. 2894–2906.327. Russo L., Taraballi F., Lupo C., et al. Carbonate hydroxyapatitefunctionalization: a comparative study towards (bio)molecules fixation // Interface246Focus. – 2014. – Vol. 4, № 1. - e20130040.328. Ryu H.S., Namgung C., Lee J.H., Lim Y.J.
The influence of threadgeometry on implant osseointegration under immediate loading: a literature review// J. Adv. Prosthodont. – 2014. – Vol. 6, № 6. – P. 547–554.329. Ryu J.J., Park K., Kim H.S., et al. Effects of anodized titanium withArg-Gly-Asp (RGD) peptide immobilized via chemical grafting or physicaladsorption on bone cell adhesion and differentiation // Int. J.
OralMaxillofac. Implants. – 2013. – Vol. 28, № 4. – P. 963-972.330. Saini M., Singh Y., Arora P., et al. K. Implant biomaterials: Acomprehensive review // World J. Clin. Cases. – 2015. – Vol. 3, № 1. – P. 52–57.331. Salou L., Hoornaert A., Louarn G., Layrolle P. Enhancedosseointegrationoftitanium implants withnanostructuredsurfaces:anexperimental study in rabbits // Acta Biomater.
2015; 11: 494-502.332. Sargolzaie N., Moeintaghavi A., Shojaie H. Comparing the quality oflife of patients requesting dental implants before and after implant // Open Dent.J. – 2017. – Vol. 11. – P. 485–491.333. SchaustenM.C.,MengD.C.,TelleR.,BoccacciniA.R.Electrophoretic deposition of carbon nanotubes and bioactive glass particles forbioactive composite coatings // Ceramics Int. 2010; 36(1): 307–312.334. Schliephake H., Aref A., Scharnweber D., Bierbaum S., Sewing A.Effect of modifications of dual acid-etched implant surfaces on peri-implant boneformation. Part I: organic coatings.
Clin. Oral Implants Res. 2009; 20(1): 31-37.335. Schliephake H., Aref A., Scharnweber D., et al. Effect ofmodifications of dual acid-etched implant surfaces on peri-implant boneformation. Part I: organic coatings // Clin. Oral Implants Res. 2009; 20(1): 31-37.336. Schmidlin P.R., Müller P., Attin T., et al. Polyspecies biofilmformation on implant surfaces with different surface characteristics // J. Appl. OralSci. – 2013; 21(1): P. 48–55.247337. Sennerby L., Andersson P., Verrocchi D., Viinamaki R.
One-yearoutcomes of Neoss bimodal implants. A prospective clinical, radiographic, andRFA study // Clin Implant Dent. Relat. Res. – 2012. – Vol. 14, № 3. – P. 313–320.338. Shah F.K., Gebreel A., Elshokouki A.H., et al. Comparison ofimmediate complete denture, tooth and implant-supported overdenture on verticaldimension and muscle activity // J. Adv. Prosthodont.