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Digital Applications in Endodontics

Year 2021, Volume: 38 Issue: 3s, 168 - 174, 09.05.2021

Abstract

The aim of this review was to provide an overview of the applications of digital dentistry technologies in endodontics, such as digital two-dimensional (2-D) and three-dimensional (3-D) imaging techniques, computer aided diagnosis (CAD) and improvement of artificial intelligence (AI) models, computer-controlled access cavity designs and 3-D printing applications. Advantages and disadvantages of these newly introduced technologies were discussed briefly with their indications. Apart from therapeutical or rehabilitative procedures, the use of digital technologies adapted for student training and research simulations were also presented.

References

  • Abduo, J., Lyons, K., Bennamoun, M., 2014. Trends in computer-aided manufacturing in prosthodontics: a review of the available streams. Int. J. Dent. 783948.
  • Ahn, S. Y., Kim, N. H., Kim, S., Karabucak, B., Kim, E., 2018. Computer-aided design/computer-aided manufacturing–guided endodontic surgery: guided osteotomy and apex localization in a mandibular molar with a thick buccal bone plate. J. Endod. 44, 665-670.
  • American Association of Endodontists., 2016. Guide to clinical endodontics. Chicago, IL, USA.
  • American Association of Endodontists., 2016. Glossary of endodontic terms. 9th Edition, Chicago, IL, USA.
  • American Association of Endodontists., 2006. Case difficulty assessment form. Accessed at: https://www.aae.org/specialty/wp-content/uploads/sites/2/2017/10/2006casedifficulty assessmentformb_edited2010.pdf.
  • Anderson, J., Wealleans, J., Ray, J., 2018. Endodontic applications of 3D printing. Int. Endod. J. 51, 1005-1018.
  • Bahcall, J. K., 2014. Using 3-dimensional printing to create presurgical models for endodontic surgery. Compend. Contin. Educ. Dent. 35, e29-30.
  • Baruwa, A. O., Martins, J. N., Meirinhos, J., Pereira, B., Gouveia, J., Quaresma S. A., Monroe, A., Ginjieira A., 2020. The influence of missed canals on the prevalence of periapical lesions in endodontically treated teeth: a cross-sectional study. J. Endod. 46, 34-39.e1.
  • Berkhout, W., Beuger, D., Sanderink, G., Van Der Stelt, P., 2004. The dynamic range of digital radiographic systems: dose reduction or risk of overexposure? Dentomaxillofac Rad 33, 1-5.
  • Bill, J. S., Reuther, J. F., Dittmann, W., Kübler, N., Meier, J. L., Pistner, H., Wittenberg, G., 1995. Stereolithography in oral and maxillofacial operation planning. Int. J. Oral. Maxillofac. Surg. 24, 98-103.
  • Bindl, A., Mormann, W. H., 1999. Clinical evaluation of adhesively placed Cerec endo-crowns after 2 years-preliminary results. J. Adhes. Dent. 3, 255-265.
  • Brüllmann, D. D., Weichert, C. I., Daubländer, M., 2011. Intraoral Cameras as a Computer‐Aided Diagnosis Tool for Root Canal Orifices. J. Dent. Educ. 75, 1452-1457.
  • Chong, B. S., Dhesi, M., Makdissi, J., 2019. Computer-aided dynamic navigation: a novel method for guided endodontics. Quintessence Int. 50, 196-202.
  • Connert, T., Zehnder, M. S., Amato, M., Weiger, R., Kuhl, S., Krastl, G., 2018. Microguided Endodontics: a method to achieve minimally invasive access cavity preparation and root canal location in mandibular incisors using a novel computer-guided technique. Int. Endod. J. 51, 247-255.
  • Connert, T., Zehnder, M. S., Weiger, R., Kuhl, S., Krastl, G., 2017. Microguided endodontics: accuracy of a miniaturized technique for apically extended access cavity preparation in anterior teeth. J. Endod. 43, 787-790.
Year 2021, Volume: 38 Issue: 3s, 168 - 174, 09.05.2021

Abstract

References

  • Abduo, J., Lyons, K., Bennamoun, M., 2014. Trends in computer-aided manufacturing in prosthodontics: a review of the available streams. Int. J. Dent. 783948.
  • Ahn, S. Y., Kim, N. H., Kim, S., Karabucak, B., Kim, E., 2018. Computer-aided design/computer-aided manufacturing–guided endodontic surgery: guided osteotomy and apex localization in a mandibular molar with a thick buccal bone plate. J. Endod. 44, 665-670.
  • American Association of Endodontists., 2016. Guide to clinical endodontics. Chicago, IL, USA.
  • American Association of Endodontists., 2016. Glossary of endodontic terms. 9th Edition, Chicago, IL, USA.
  • American Association of Endodontists., 2006. Case difficulty assessment form. Accessed at: https://www.aae.org/specialty/wp-content/uploads/sites/2/2017/10/2006casedifficulty assessmentformb_edited2010.pdf.
  • Anderson, J., Wealleans, J., Ray, J., 2018. Endodontic applications of 3D printing. Int. Endod. J. 51, 1005-1018.
  • Bahcall, J. K., 2014. Using 3-dimensional printing to create presurgical models for endodontic surgery. Compend. Contin. Educ. Dent. 35, e29-30.
  • Baruwa, A. O., Martins, J. N., Meirinhos, J., Pereira, B., Gouveia, J., Quaresma S. A., Monroe, A., Ginjieira A., 2020. The influence of missed canals on the prevalence of periapical lesions in endodontically treated teeth: a cross-sectional study. J. Endod. 46, 34-39.e1.
  • Berkhout, W., Beuger, D., Sanderink, G., Van Der Stelt, P., 2004. The dynamic range of digital radiographic systems: dose reduction or risk of overexposure? Dentomaxillofac Rad 33, 1-5.
  • Bill, J. S., Reuther, J. F., Dittmann, W., Kübler, N., Meier, J. L., Pistner, H., Wittenberg, G., 1995. Stereolithography in oral and maxillofacial operation planning. Int. J. Oral. Maxillofac. Surg. 24, 98-103.
  • Bindl, A., Mormann, W. H., 1999. Clinical evaluation of adhesively placed Cerec endo-crowns after 2 years-preliminary results. J. Adhes. Dent. 3, 255-265.
  • Brüllmann, D. D., Weichert, C. I., Daubländer, M., 2011. Intraoral Cameras as a Computer‐Aided Diagnosis Tool for Root Canal Orifices. J. Dent. Educ. 75, 1452-1457.
  • Chong, B. S., Dhesi, M., Makdissi, J., 2019. Computer-aided dynamic navigation: a novel method for guided endodontics. Quintessence Int. 50, 196-202.
  • Connert, T., Zehnder, M. S., Amato, M., Weiger, R., Kuhl, S., Krastl, G., 2018. Microguided Endodontics: a method to achieve minimally invasive access cavity preparation and root canal location in mandibular incisors using a novel computer-guided technique. Int. Endod. J. 51, 247-255.
  • Connert, T., Zehnder, M. S., Weiger, R., Kuhl, S., Krastl, G., 2017. Microguided endodontics: accuracy of a miniaturized technique for apically extended access cavity preparation in anterior teeth. J. Endod. 43, 787-790.
There are 15 citations in total.

Details

Primary Language English
Subjects Health Care Administration
Journal Section Clinical Research
Authors

Cangül Keskin 0000-0001-8990-4847

Ali Keleş 0000-0002-6834-4307

Publication Date May 9, 2021
Submission Date September 7, 2020
Acceptance Date December 31, 2020
Published in Issue Year 2021 Volume: 38 Issue: 3s

Cite

APA Keskin, C., & Keleş, A. (2021). Digital Applications in Endodontics. Journal of Experimental and Clinical Medicine, 38(3s), 168-174.
AMA Keskin C, Keleş A. Digital Applications in Endodontics. J. Exp. Clin. Med. May 2021;38(3s):168-174.
Chicago Keskin, Cangül, and Ali Keleş. “Digital Applications in Endodontics”. Journal of Experimental and Clinical Medicine 38, no. 3s (May 2021): 168-74.
EndNote Keskin C, Keleş A (May 1, 2021) Digital Applications in Endodontics. Journal of Experimental and Clinical Medicine 38 3s 168–174.
IEEE C. Keskin and A. Keleş, “Digital Applications in Endodontics”, J. Exp. Clin. Med., vol. 38, no. 3s, pp. 168–174, 2021.
ISNAD Keskin, Cangül - Keleş, Ali. “Digital Applications in Endodontics”. Journal of Experimental and Clinical Medicine 38/3s (May 2021), 168-174.
JAMA Keskin C, Keleş A. Digital Applications in Endodontics. J. Exp. Clin. Med. 2021;38:168–174.
MLA Keskin, Cangül and Ali Keleş. “Digital Applications in Endodontics”. Journal of Experimental and Clinical Medicine, vol. 38, no. 3s, 2021, pp. 168-74.
Vancouver Keskin C, Keleş A. Digital Applications in Endodontics. J. Exp. Clin. Med. 2021;38(3s):168-74.