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Garg, Nisha
- The Effect of Different Post Materials and Cements on Fracture Resistance of Endodontically Treated Teeth - an in Vitro Study
Abstract Views :251 |
PDF Views:102
Authors
Affiliations
1 Dept. of Conservative Dentistry and Endodontics, Sri Sukhmani Dental College and Hospital, Punjab, IN
2 Dept. of Conservative Dentistry and Endodontics, Bhojia Dental College and Hospital, Himachal Pradesh, IN
3 Dept. of Conservative Dentistry and Endodontics, D.A.V. Dental College and Hospital, Haryana, IN
4 Dept. of Conservative Dentistry and Endodontics, Subharti Dental College, Uttar Pradesh, IN
5 Dept. of Oral and Maxillofacial Surgery, Sri Sukhmani Dental College and Hospital, Punjab, IN
1 Dept. of Conservative Dentistry and Endodontics, Sri Sukhmani Dental College and Hospital, Punjab, IN
2 Dept. of Conservative Dentistry and Endodontics, Bhojia Dental College and Hospital, Himachal Pradesh, IN
3 Dept. of Conservative Dentistry and Endodontics, D.A.V. Dental College and Hospital, Haryana, IN
4 Dept. of Conservative Dentistry and Endodontics, Subharti Dental College, Uttar Pradesh, IN
5 Dept. of Oral and Maxillofacial Surgery, Sri Sukhmani Dental College and Hospital, Punjab, IN
Source
Dental Journal of Advance Studies, Vol 4, No 1 (2016), Pagination: 38-43Abstract
Objective: To evaluate the effect of various post materials and cements on fracture resistance of endodontically treated teeth. Material and Methods: Three post systems; custom made Ni-Cr post and core, prefabricated stainless steel and carbon fibre post with composite core and two different luting cements i.e glass ionomer and resin cements were used. Results and Conclusions: Carbon fibre post cemented with resin cements showed higher failure load than Ni-Cr and stainless steel post and resin cement performed better than glass ionomer cement, the mode of fracture was more favourable with carbon fibre post than in metallic post.Keywords
Custom Made Ni-Cr Post, Glass Ionomer Cement, Prefabricated Carbon Fibre Post, Prefabricated Stainless Steel Post, Resin Cement.References
- Cohen Burns. Pathways of the Pulp: 8th Ed.; Mosby Pb. 2002.
- Ingle, Bakland. Endodontics: 5th Ed.; William & Wilkins Pb.2002.
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- Weine . Endodontic therapy: 6th Ed.; Mosby Pb. 2004.
- Akkayan B, Gulmez T. Resistance to fracture of endodontically treated teeth restored with different post systems. J Prosthet Dent 2002; 87: 431 - 437.
- Al-harbi F, Nathanson D. In vitro assessment of retention of four esthetic dowels to resin core foundation and teeth. J Prosthet Dent 2003; 90: 547 - 555.
- Asmussen E, Peutzfeldt A, Heitmann T. Stiffness, elastic limit and strength of newer types of endodontic posts. J Dent 1999; 27: 275 - 278.
- Butz F. Survival rate and fracture strength of Endodontically treated maxillary incisors with moderate defects restored with different post and core system; An invitro study. Int J Prosthodont. 2001; 14: 58-64.
- Mezzomo E, Massa F, Libera SD. Fracture resistance of teeth restored with two different post and core designs cemented with two different cements: An in vitro study. Part I. Quintessence Int. 2003; 34: 301 - 306.
- Raygot CG, Chai J, Jameson DL. Fracture resistance and primary failure mode of endodotnically treated teeth restored with a carbon fiber – reinforced resin post system in vitro. Int J Prosthodont 2001; 14: 141 - 145.
- Mendoza DB. Root reinforcement with a resin bonded preformed post. J Prosthet Dent. 1997; 78: 10 - 15.
- Isidor F, Odman P, Brondum K. Intermittent loading of teeth using prefabricated carbon fiber posts. Int J Prosthodont. 1996; 9: 131 - 136.
- Ottl P. Fracture characteristics of carbon fiber, ceramic and non-palladium endodontic post systems as monotonously increasing loads. J Oral Rehabil 2002; 29: 175 - 183.
- Dean JP, Jeansonne BG, Sarkar N. In vitro evaluation of a carbon fiber post. J Endod 1998; 24 (12): 807 - 810.
- Hu Y-H. Fracture resistance of endodontically treated anterior teeth restored with four post and core systems. Quintessence Int 2003; 34 : 349 - 353.
- Raygot CG, Chai J, Jameson DL. Fracture resistance and primary failure mode of endodotnically treated teeth restored with a carbon fiber – reinforced resin post system in vitro. Int J Prosthodont 2001; 14: 141 - 145.
- Sidoli G E .:An invitro evaluation of a carbon fiber based post and core system. J Prosthet Dent. 1997; 78: 5 - 9.
- Guzy GE, Nicholls JI. Invitro comparison of intact endodontically treated teeth with and without endo-post reinforcement. Part-I. J Prosthet Dent 1979; 42 : 39 - 44.
- Bergman B, Lundquist P et al. Restorative and endodontic results after treatment with cast posts and cores. J Prosthet Dent. 1989, 61: 10-15.
- Condos S, Deutsch AS, Musikant BL. Fracture strength of three different core materials in combination with there different endodotnic posts. Int J Prosthodont. 1994; 7 : 178-82.
- Dale JW. A clinical evaluation of semi-precious alloys for dowels and cores. J Prosthet Dent. 1977; 38: 161-167.
- Management of Iatrogenic Furcation Perforation in Mandibular First Molar with Biodentine-Two Years Follow Up
Abstract Views :223 |
PDF Views:84
Authors
Affiliations
1 Department of Conservative Dentistry and Endodontics, Bhojia Dental College and Hospital, Himachal Pradesh, IN
2 Dept. of Conservative Dentistry and Endodontics, HIDS, Himachal Pradesh, IN
1 Department of Conservative Dentistry and Endodontics, Bhojia Dental College and Hospital, Himachal Pradesh, IN
2 Dept. of Conservative Dentistry and Endodontics, HIDS, Himachal Pradesh, IN
Source
Dental Journal of Advance Studies, Vol 5, No 1 (2017), Pagination: 51-54Abstract
Successful management of furcation perforations poses a challenge for a clinician. The perforation can result from iatrogenic causes, caries or resorption. It is advisable to repair the perforation as soon as it is identified, since any delay allows the bacterial ingress leading to a complicated endodontic-periodontal lesion and ultimately in the treatment failure. This case report describes successful management of a furcal perforation in a mandibular first molar, which was repaired using Biodentine. The endodontic treatment was completed and the tooth was coronally restored with composite followed by full coverage restoration. Two years follow up of the case showing absence of pain; periradicular healing of the lesion, along with functional tooth stability indicated a successful outcome of endodontic treatment and sealing the perforation using Biodentine.Keywords
Biodentine, Perforation, Mandibular First Molar.References
- Deeb M, Tabjbi A, Jensen J. An evaluation of the use of amalgam, cavit and calcium hydroxide in the repair of furcation perforation. J Endod 1982 ; 10 (8): 459-466.
- Wong R. Microscopic management of procedural errors. Dent Clin North Am 1997;41:455-77.
- Silva E, Andrade C, Tay L, Herrera D. Furcal-perforation repair with mineral trioxide aggregate: Two years follow-up. Indian J Dent Res 2012;23(4)542-545.
- Behnia A, Strasseler HE, Campbell R. Repairing iatrogenic ischolar_main perforations. J Am Dent Assoc 2000;131:196-201.
- Vivek Aggarwal, Mamta Singla , Sanjay Miglani, Sarita Kohli. Comparative evaluation of push-out bond strength of ProRoot MTA, Biodentine, and MTA Plus in furcation perforation repair. J Conserv Dent 2013;16(5):462-465.
- Z. Mohammadi, P. M. H. Dummer. Properties and applications of calcium hydroxide in endodontics and dental traumatology. Int Endod J 2011;44:697-730.
- Schuurs AH, Gruythuysen RJ, Wesselink PR. Pulp capping with adhesive resin-based composite vs. calcium hydroxide: a review. Endod & Dent Traumatol 2000;16:240-50.
- Maria Giovanna Gandolfi, Francesco Siboni, Antonella Polimeni, Maurizio Bossu, Francesco Riccitiello, Sandro Rengo and Carlo Prati. In Vitro Screening of the Apatite-Forming Ability, Biointeractivity and Physical Properties of a Tricalcium Silicate Material for Endodontics and Restorative Dentistry. Dent. J. 2013;1:41-60.
- Priyalakshmi.S, Manish Ranjan. Review on Biodentine - A Bioactive Dentin Substitute. IOSR-JDMS 2014;13(1):13-17.