[1] Hess D,Solomon E,Spears R,et al. Retreatability of a bioceramic root canal sealing material [J]. J Endod,2011,37(11):1547-1549.
[2] Loushine BA,Bryan TE,Looney SW,et al. Setting properties and cytotoxicity evaluation of a premixed bioceramic root canal sealer [J]. J Endod,2011,37(5):673-677.
[3] Damas BA,Wheater MA,Bringas JS,et al. Cytotoxicity comparison of mineral trioxide aggregates and EndoSequence bioceramic root repair materials [J]. J Endod,2011,37(3):372-375.
[4] Leal F,De-Deus G,Brandao C,et al. Comparison of the root-end seal provided by bioceramic repair cements and White MTA [J]. Int Endod,2011,44(7):662-668.
[5] Zhang H,Shen Y,Ruse ND,et al. Antibacterial activity of endodontic sealers by modified direct contact test against Enterococcus faecalis [J]. J Endod,2009,35(7):1051-1055.
[6] Chandra SS,Shankar P,Indira R. Depth of penetration of four resin sealers into radicular dentinal tubules:a confocal microscopic study [J]. J Endod,2012,38(10):1412-1416.
[7] Ersahan S,Aydin C. Dislocation resistance of iRoot SP,a calcium silicate-based sealer,from radicular dentine [J]. J Endod,2010,36(12):2000-2002.
[8] Candeiro GT,Correia FC,Duarte MA,et al. Evaluation of radiopacity,pH,release of calcium ions,and flow of a bioceramic root canal sealer [J]. J Endod,2012,38(6):842-845.
[9] McHugh CP,Zhang P,Michalek S,et al. pH required to kill Enterococcus faecalis in vitro [J]. J Endod,2004,30(4):218-219.
[10] Stuart CH,Schwartz SA,Beeson TJ,et al. Enterococcus faecalis:its role in root canal treatment failure and current concepts in retreatment [J]. J Endod,2006,32(2):93-98.
[11] Ersahan S,Aydin C. Solubility and apical sealing characteristics of a new calcium silicate-based root canal sealer in comparison to calcium hydroxide-,methacrylate resin- and epoxy resin-based sealers [J]. Acta Odontol Scand,2012 Oct 22. [Epub ahead of print]
[12] Lacey S,Pitt Ford TR,Watson TF,et al. A study of the rheological properties of endodontic sealers [J]. Int Endod J,2005,38(8):499-504.
[14] Barkhordar RA,Goodis HE,Watanabe L,et al. Evaluation of temperature rise on the outer surface of teeth during root canal obturation techniques [J]. Quintessence Int,1990,21(7):585-588.
[15] Behnia A,McDonald NJ. In vitro infrared thermographic assessment of root surface temperatures generated by the thermafil plus system [J]. J Endod,2001,27(3):203-205.
[16] Keles A,Ahmetoglu F,Simsek N,et al. Heat conductive properties of set root canal sealers [J]. Acta Odontol Scand,2012 Aug 20. [Epub ahead of print]
[18] Zhang W,Li Z,Peng B,et al. Assessment of a new root canal sealer’s apical sealing ability [J]. Oral Surg Oral Med Oral Pathol Oral Radiol Endod,2009,107(6):e19-e82.
[19] Bouillaguet S,Wataha JC,Tay FR,et al. Initial in vitro biological response to contemporary endodontic sealers [J]. J Endod,2006,32(10):989-992.
[20] Parirokh M,Torabinejad M. Mineral trioxide aggregate:a comprehensive literature review. Part I:chemical,physical and antibacterial properties [J]. J Endod,2010:36(1):16-27.
[21] Torabinejad M, Parirokh M. Mineral trioxide aggregate: a comprehensive literature review—part II: leakage and biocompatibility investigations[J]. J Endod,2010;36(2):190-202.
[22] Ma J,Sben Y,Stojicic S,et al. Biocompatibility of two novel root repair materials [J]. J Endod,2011,37(6):793-798.