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Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique
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Original Article Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique
Ho-Young So, Young-Mi Lee, Kwang-Keun Kim1, Ki-Ok Kim, Young-Kyung Kim, Sung-Kyo Kim,*
Journal of Korean Academy of Conservative Dentistry 2004;29(5):439-445.
DOI: https://doi.org/10.5395/JKACD.2004.29.5.439
Published online: January 14, 2004

Department of Conservative Dentistry, School of Dentistry, Kyungpook National University

1Department of Dentistry, College of Medicine, Konkuk University

*Corresponding author: Sung-Kyo Kim, Department of Conservative Dentistry, School of Dentistry, Kyungpook National University 188-1, 2-Ga, Samdeok-Dong, Jung-Gu, Daegu, Korea, 700-412, Tel : 82-53-420-5935 Fax : 82-53-426-8958, Email: skykim@knu.ac.kr

Copyright © 2004 The Korean Academy of Conservative Dentistry

This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

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  • The purpose of this study was to evaluate the influence of plugger penetration depth on the apical extrusion of root canal sealer during root canal obturation with Continuous Wave of Condensation Technique.
    Root canals of forty extracted human teeth were divided into four groups and were prepared up to size 40 of 0.06 taper with ProFile. After drying, canals of three groups were filled with Continuous Wave of Condensation Technique with System B™ and different plugger penetration depths of 3, 5, and 7 mm from the apex. Canals of one group were filled with cold lateral compaction technique as a control. Canals were filled with non-standardized master gutta-percha cones and 0.02 mL of Sealapex. Apical extruded sealer was collected in a container and weighed. Data was analyzed with one-way ANOVA and Duncan’s Multiple Range Test. 3 and 5 mm penetration depth groups in Continuous Wave of Condensation Technique showed significantly more extrusion of root canal sealer than 7 mm penetration depth group (p < 0.05). However, there was no significant difference between 7 mm depth group in Continuous Wave of Condensation Technique and cold lateral compaction group (p < 0.05).
    The result of this study demonstrates that deeper plugger penetration depth causes more extrusion of root canal sealer in root canal obturation by Continuous Wave of Condensation Technique. Therefore, special caution is needed when plugger penetration is deeper in the canal in Continuous Wave of Condensation Technique to minimize the amount of sealer extrusion beyond apex.
Figure 1.
Diagram of experimental unit for the root canal obturation and collection of extruded root canal sealer
jkacd-29-439f1.jpg
Figure 2.
The amount of extruded root canal sealer.
jkacd-29-439f2.jpg

* Apical 3, 5, and 7 ㎜ of plugger penetration depth in Continuous Wave of Condensation Technique (CW-CT).** Significantly different (p < 0.05).

Table 1.
Experimental groups with different plugger penetration depths from the root apex.
Group n Plugger penetration depth from apex
10 3 mm from root apex with CWCT*
10 5 mm from root apex with CWCT
10 7 mm from root apex with CWCT
10 Cold lateral compaction technique

CWCT*: Continuous Wave of Condensation Technique

  • 1. Buchanan LS. The continuous wave of obturation technique :‘Centered’condensation of warm gutta percha in 12 seconds. Dent Today 60-67. 1996.
  • 2. Silver GK, Love RM, Purton DG. Comparison of two vertical condensation obturation techniques: Touch’n heat modified and System B. Int Endod J 32:287-295. 1999.PubMed
  • 3. Smith RS, Weller RN, Loushine RJ, Kimbrough WF. Effect of varying the depth of heat application on the adaptability of gutta-percha during warm vertical compaction. J Endod 26:668-672. 2000.ArticlePubMed
  • 4. Yared GM, Dagher FEB. Influence of plugger penetration on the sealing ability of vertical condensation. J Endod 21:152-153. 1995.ArticlePubMed
  • 5. Bowman CJ, Baumgartner JC. Gutta-percha obturation of lateral grooves and depressions. J Endod 28:220-223. 2002.ArticlePubMed
  • 6. Kim HY, Kim SK. Influence of plugger penetration depth on the apical seal obturated by continuous wave of condensation technique. J Kor Acad Conserv Dent 26:273-284. 2001.
  • 7. Lin LM, Skribner JE, Gaengler P. Factors associated with endodontic treatment failures. J Endod 18:625-627. 1992.ArticlePubMed
  • 8. Torabinejad M, Dorn SO, Eleazer PD, Frankson M, Jouhari B, Mullin RK, Soluti A. Effectiveness of various medications on postoperative pain following root canal obturation. J Endod 20:427-431. 1994.ArticlePubMed
  • 9. Seltzer S. Endodontology. 2nd ed. Lea & Febiger; Philadelphia, PA: p. p357-378. 1988.
  • 10. Gutmann JL, Saunders WP, Saunders EM, Nguyen L. An assessment of the plastic Thermafil obturation technique. Part I. Radiographic evaluation of adaptation and placement. Int Endod J 26:173-178. 1993.PubMed
  • 11. Dummer PMH, Rawle LLJ, Kennedy JK. A laboratory study of root fillings in teeth obturated by lateral condensation of gutta-percha or Thermafil obturators. Int Endod J 27:32-38. 1994.ArticlePubMed
  • 12. Dummer PMH, Kelly T, Meghji A, Sheikh I, Vanitchai JT. An in vitro study of the quality of root fillings in teeth obturated by lateral condensation of gutta-percha or Thermafil obturators. Int Endod J 26:99-105. 1993.ArticlePubMed
  • 13. Scott AC, Vire DE. An evaluation of the ability of a dentin plug to control extrusion of thermoplasticized gutta-percha. J Endod 18:52-57. 1992.ArticlePubMed
  • 14. Johnson BT, Bond MS. Leakage associated with single or multiple increment backfill with the Obtura II gutta-percha system. J Endod 25:613-614. 1999.PubMed
  • 15. Mann SR, McWalter GM. Evaluation of apical seal and placement control in straight and curved canals obturated by laterally condensed and thermoplasticized gutta-percha. J Endod 13:10-17. 1987.ArticlePubMed
  • 16. LaCombe JS, Campbell AD, Hicks ML, Pelleu Jr GB. A comparison of the apical seal produced by two thermo-plasticized injectable gutta-percha techniques. J Endod 14:445-450. 1988.ArticlePubMed
  • 17. Cohen S, Burns RC. Pathways of the pulp. 8th ed. CV Mosby Co; St Louis: p. p293-364. 2002.
  • 18. Blum JY, Parahy E, Micallef JP. Analysis of the forces developed during obturation: warm vertical compaction. J Endod 23:91-95. 1997.PubMed
  • 19. Blum JY, Machtou P, Micallef JP. Analysis of forces developed during obturations. Wedging effect: Part I. J Endod 24:217-222. 1998.ArticlePubMed
  • 20. Blum JY, Machtou P, Micallef JP. Analysis of forces developed during obturations. Wedging effect: Part II. J Endod 24:223-228. 1998.ArticlePubMed
  • 21. Kwon OS, Kim SK. Apical fitness of non-standardized gutta-percha cones in simulated root canals prepared with rotary root canal instruments. J Kor Acad Conserv Dent 25:390-398. 2000.
  • 22. Hong HY, Choi HY, Choi GW. Effectiveness of customized master cone on apical sealing in various apical size of prepared root canals. J Kor Acad Conserv Dent 27:66-74. 2002.
  • 23. Buchanan LS. Gutta percha cone fitting into tapered preparations: Standardizing the use of non-standard points. Dent Today May 42-47. 1995.
  • 24. Dagher FEB, Yared GM. Master cone apical movement during compaction: evaluation of two in vitro models. J Endod 18:22-25. 1993.
  • 25. Yared GM, Chahine TI, Dagher FEB. Master cone apical behavior under in vitro compaction. J Endod 18:318-321. 1992.ArticlePubMed
  • 26. Marciano J, Michailesco P, Charpentier E, Carrera LC, Abadie MJM. Thermomechanical analysis of dental gutta-percha. J Endod 18:263-270. 1992.PubMed
  • 27. Brooke KK, Grace MGA. Relationship of intracanal pressure with viscosity of endodontic sealer during warm gutta-percha vertical compaction. Oral Surg Oral Med Oral Pathol 89:618-622. 2000.ArticlePubMed
  • 28. Jeffrey IWM, Saunders WP, Thomas GE. An investigation into the movement of sealer during placement of gutta-percha points. Int Endod J 19:21-28. 1986.ArticlePubMed
  • 29. Ritchie GM, Anderson DM, Sakumura JS. Apical extrusion of thermoplasticized gutta-percha used as a root canal filling. J Endod 14:128-132. 1988.ArticlePubMed
  • 30. Yared GM, Dagher FEB. Apical enlargement: influence on overextensions during in vitro vertical compaction. J Endod 20:269-271. 1994.PubMed
  • 31. Lim DY, Lee HJ, Hur B. Comparison of the influence of canal curvature on the sealing ability of lateral condensation and System BTM. J Kor Acad Conserv Dent 24:482-489. 1999.
  • 32. Kutter Y. Microscopic investigation of root apex. J Am Dent Assoc 50:544-552. 1955.PubMed
  • 33. Park JM, Kim SK. Effect of canal preparation methods on the apical extrusion of debris. J Kor Acad Conserv Dent 24:399-407. 1999.
  • 34. Myer GL, Montgomery S. A comparison of weights of debris extruded apically by conventional filing and canal master techniques. J Endod 17:275-279. 1991.PubMed

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        Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique
        J Korean Acad Conserv Dent. 2004;29(5):439-445.   Published online January 14, 2004
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      Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique
      Image Image
      Figure 1. Diagram of experimental unit for the root canal obturation and collection of extruded root canal sealer
      Figure 2. The amount of extruded root canal sealer.
      Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique
      Group n Plugger penetration depth from apex
      10 3 mm from root apex with CWCT*
      10 5 mm from root apex with CWCT
      10 7 mm from root apex with CWCT
      10 Cold lateral compaction technique
      Table 1. Experimental groups with different plugger penetration depths from the root apex.

      CWCT*: Continuous Wave of Condensation Technique


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