Endodontide Minimal İnvaziv Giriş Kavite Tasarımları
Referanslar
Siqueira Jr JF, Rôças IN. Clinical implications and microbiology of bacterial persistence after treatment procedures. Journal of endodontics. 2008;34(11):1291-301. e3.
Bóveda C, Kishen A. Contracted endodontic cavities: the foundation for less invasive alternatives in the management of apical periodontitis. Endodontic Topics. 2015;33(1):169-86.
Patel S, Rhodes J. A practical guide to endodontic access cavity preparation in molar teeth. British dental journal. 2007;203(3):133-40.
Neelakantan P, Khan K, Ng GPH, Yip CY, Zhang C, Cheung GSP. Does the orifice-directed dentin conservation access design debride pulp chamber and mesial root canal systems of mandibular molars similar to a traditional access design? Journal of endodontics. 2018;44(2):274-9.
Reeh ES, Messer HH, Douglas WH. Reduction in tooth stiffness as a result of endodontic and restorative procedures. Journal of endodontics. 1989;15(11):512-6.
Clark D, Khademi J. Modern molar endodontic access and directed dentin conservation. Dental Clinics. 2010;54(2):249-73.
Gluskin AH, Peters CI, Peters OA. Minimally invasive endodontics: challenging prevailing paradigms. British dental journal. 2014;216(6):347-53.
Özyürek T, Ülker Ö, Demiryürek EÖ, Yılmaz F. The effects of endodontic access cavity preparation design on the fracture strength of endodontically treated teeth: traditional versus conservative preparation. Journal of endodontics. 2018;44(5):800-5.
Krishan R, Paqué F, Ossareh A, Kishen A, Dao T, Friedman S. Impacts of conservative endodontic cavity on root canal instrumentation efficacy and resistance to fracture assessed in incisors, premolars, and molars. Journal of endodontics. 2014;40(8):1160-6.
Rover G, Belladonna FG, Bortoluzzi EA, De-Deus G, Silva EJNL, Teixeira CS. Influence of access cavity design on root canal detection, instrumentation efficacy, and fracture resistance assessed in maxillary molars. Journal of Endodontics. 2017;43(10):1657-62.
Silva A, Belladonna F, Rover G, Lopes R, Moreira E, De‐Deus G, et al. Does ultraconservative access affect the efficacy of root canal treatment and the fracture resistance of two‐rooted maxillary premolars? International endodontic journal. 2020;53(2):265-75.
Silva EJNL, Rover G, Belladonna FG, De-Deus G, da Silveira Teixeira C, da Silva Fidalgo TK. Impact of contracted endodontic cavities on fracture resistance of endodontically treated teeth: a systematic review of in vitro studies. Clinical oral investigations. 2018;22(1):109-18.
Tan PL, Aquilino SA, Gratton DG, Stanford CM, Tan SC, Johnson WT, et al. In vitro fracture resistance of endodontically treated central incisors with varying ferrule heights and configurations. The Journal of prosthetic dentistry. 2005;93(4):331-6.
Yuan K, Niu C, Xie Q, Jiang W, Gao L, Huang Z, et al. Comparative evaluation of the impact of minimally invasive preparation vs. conventional straight‐line preparation on tooth biomechanics: a finite element analysis. European journal of oral sciences. 2016;124(6):591-6.
Corsentino G, Pedullà E, Castelli L, Liguori M, Spicciarelli V, Martignoni M, et al. Influence of access cavity preparation and remaining tooth substance on fracture strength of endodontically treated teeth. Journal of endodontics. 2018;44(9):1416-21.
Goto Y, Nicholls JI, Phillips KM, Junge T. Fatigue resistance of endodontically treated teeth restored with three dowel-and-core systems. The Journal of prosthetic dentistry. 2005;93(1):45-50.
Silva E, Pinto K, Ferreira C, Belladonna F, De‐Deus G, Dummer P, et al. Current status on minimal access cavity preparations: a critical analysis and a proposal for a universal nomenclature. International Endodontic Journal. 2020;53(12):1618-35.
Alovisi M, Pasqualini D, Musso E, Bobbio E, Giuliano C, Mancino D, et al. Influence of contracted endodontic access on root canal geometry: an in vitro study. Journal of endodontics. 2018;44(4):614-20.
Zhang Y, Liu Y, She Y, Liang Y, Xu F, Fang C. The effect of endodontic access cavities on fracture resistance of first maxillary molar using the extended finite element method. Journal of endodontics. 2019;45(3):316-21.
Roperto R, Sousa YT, Dias T, Machado R, Perreira RD, Leoni GB, et al. Biomechanical behavior of maxillary premolars with conservative and traditional endodontic cavities. Quintessence Int. 2019;50(5):350-6.
Vieira GC, Pérez AR, Alves FR, Provenzano JC, Mdala I, Siqueira Jr JF, et al. Impact of contracted endodontic cavities on root canal disinfection and shaping. Journal of endodontics. 2020;46(5):655-61.
Plotino G, Grande NM, Isufi A, Ioppolo P, Pedullà E, Bedini R, et al. Fracture strength of endodontically treated teeth with different access cavity designs. Journal of endodontics. 2017;43(6):995-1000.
Chuang S-F, Yaman P, Herrero A, Dennison JB, Chang C-H. Influence of post material and length on endodontically treated incisors: an in vitro and finite element study. The Journal of prosthetic dentistry. 2010;104(6):379-88.
Moore B, Verdelis K, Kishen A, Dao T, Friedman S. Impacts of contracted endodontic cavities on instrumentation efficacy and biomechanical responses in maxillary molars. Journal of endodontics. 2016;42(12):1779-83.
Xia J, Wang W, Li Z, Lin B, Zhang Q, Jiang Q, et al. Impacts of contracted endodontic cavities compared to traditional endodontic cavities in premolars. BMC oral health. 2020;20(1):1-8.
Rover G, de Lima C, Belladonna F, Garcia L, Bortoluzzi E, Silva E, et al. Influence of minimally invasive endodontic access cavities on root canal shaping and filling ability, pulp chamber cleaning and fracture resistance of extracted human mandibular incisors. International Endodontic Journal. 2020;53(11):1530-9.
Saberi EA, Pirhaji A, Zabetiyan F. Effects of endodontic access cavity design and thermocycling on fracture strength of endodontically treated teeth. Clinical, cosmetic and investigational dentistry. 2020;12:149.
Soares PV, Santos-Filho PCF, Martins LRM, Soares CJ. Influence of restorative technique on the biomechanical behavior of endodontically treated maxillary premolars. Part I: fracture resistance and fracture mode. The Journal of prosthetic dentistry. 2008;99(1):30-7.
Eaton JA, Clement DJ, Lloyd A, Marchesan MA. Micro–computed tomographic evaluation of the influence of root canal system landmarks on access outline forms and canal curvatures in mandibular molars. Journal of endodontics. 2015;41(11):1888-91.
Kosti E, Zinelis S, Molyvdas I, Lambrianidis T. Effect of root canal curvature on the failure incidence of ProFile rotary Ni–Ti endodontic instruments. International endodontic journal. 2011;44(10):917-25.
Corbella S, Del Fabbro M, Tsesis I, Taschieri S. Computerized tomography technique for the investigation of the maxillary first molar mesiobuccal root. International journal of dentistry. 2013;2013.
Briseño-Marroquín B, Paqué F, Maier K, Willershausen B, Wolf TG. Root canal morphology and configuration of 179 maxillary first molars by means of micro–computed tomography: an ex vivo study. Journal of Endodontics. 2015;41(12):2008-13.
Görduysus MÖ, Görduysus M, Friedman S. Operating microscope improves negotiation of second mesiobuccal canals in maxillary molars. Journal of Endodontics. 2001;27(11):683-6.
Stropko JJ. Canal morphology of maxillary molars: clinical observations of canal configurations. Journal of endodontics. 1999;25(6):446-50.
Das S, Warhadpande MM, Redij SA, Jibhkate N, Sabir H. Frequency of second mesiobuccal canal in permanent maxillary first molars using the operating microscope and selective dentin removal: A clinical study. Contemporary clinical dentistry. 2015;6(1):74.
Buhrley LJ, Barrows MJ, BeGole EA, Wenckus CS. Effect of magnification on locating the MB2 canal in maxillary molars. Journal of endodontics. 2002;28(4):324-7.
Saygili G, Uysal B, Omar B, Ertas ET, Ertas H. Evaluation of relationship between endodontic access cavity types and secondary mesiobuccal canal detection. BMC oral health. 2018;18(1):1-6.
Mendes E, Soares A, Martins J, Silva E, Frozoni M. Influence of access cavity design and use of operating microscope and ultrasonic troughing to detect middle mesial canals in extracted mandibular first molars. International Endodontic Journal. 2020;53(10):1430-7.
Gambill JM, Alder M, Carlos E. Comparison of nickel-titanium and stainless steel hand-file instrumentation using computed tomography. Journal of endodontics. 1996;22(7):369-75.
Leoni G, Versiani M, Silva‐Sousa Y, Bruniera J, Pécora J, Sousa‐Neto M. Ex vivo evaluation of four final irrigation protocols on the removal of hard‐tissue debris from the mesial root canal system of mandibular first molars. International endodontic journal. 2017;50(4):398-406.
Versiani M, Alves F, Andrade‐Junior C, Marceliano‐Alves M, Provenzano J, Rôças I, et al. Micro‐CT evaluation of the efficacy of hard‐tissue removal from the root canal and isthmus area by positive and negative pressure irrigation systems. International Endodontic Journal. 2016;49(11):1079-87.
De-Deus G, Marins J, Silva EJNL, Souza E, Belladonna FG, Reis C, et al. Accumulated hard tissue debris produced during reciprocating and rotary nickel-titanium canal preparation. Journal of Endodontics. 2015;41(5):676-81.
Tüfenkçi P, Yılmaz K. The effects of different endodontic access cavity design and Using XP-endo Finisher on the reduction of Enterococcus faecalis in the root canal system. Journal of endodontics. 2020;46(3):419-24.
Niemi TK, Marchesan MA, Lloyd A, Seltzer RJ. Effect of instrument design and access outlines on the removal of root canal obturation materials in oval-shaped canals. Journal of endodontics. 2016;42(10):1550-4.
Siqueira Jr JF, Araujo M, Garcia PF, Fraga RC, Dantas C. Histological evaluation of the effectiveness of five instrumentation techniques for cleaning the apical third of root canals. Journal of endodontics. 1997;23(8):499-502.
Marchesan MA, Lloyd A, Clement DJ, McFarland JD, Friedman S. Impacts of contracted endodontic cavities on primary root canal curvature parameters in mandibular molars. Journal of endodontics. 2018;44(10):1558-62.