The Changes in Size of Periapical Lesions after Root Canal Treatments Assessed by Digital Periapical Radiography and Cone-Beam Computed Tomography: A 2-Years Prospective Clinical Study
Abstract
:1. Introduction
2. Materials and Methods
2.1. Subjects and Study Design
2.2. Examinations of the Patients
2.3. Analysis of Radiographic Images
2.4. Treatment Procedures
2.5. The Diagnostic Parameters under Investigation
2.6. Statistical Analysis
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Leonardi Dutra, K.; Haas, L.; Porporatti, A.L.; Flores-Mir, C.; Santos, J.N.; Mezzomo, L.A.; Correa, M.; Canto, G.D. Diagnostic Accuracy of Cone-beam Computed Tomography and Conventional Radiography on Apical Periodontitis: A Systematic Review and Meta-analysis. J. Endod. 2016, 42, 356–364. [Google Scholar] [CrossRef]
- Patel, S.; Patel, R.; Foschi, F.; Mannocci, F. The Impact of Different Diagnostic Imaging Modalities on the Evaluation of Root Canal Anatomy and Endodontic Residents’ Stress Levels: A Clinical Study. J. Endod. 2019, 45, 406–413. [Google Scholar] [CrossRef]
- Kanagasingam, S.; Lim, C.X.; Yong, C.P.; Mannocci, F.; Patel, S. Diagnostic accuracy of periapical radiography and cone beam computed tomography in detecting apical periodontitis using histopathological findings as a reference standard. Int. Endod. J. 2017, 50, 417–426. [Google Scholar] [CrossRef] [PubMed]
- Patel, S.; Brown, J.; Pimentel, T.; Kelly, R.D.; Abella, F.; Durack, C. Cone beam computed tomography in Endodontics—A review of the literature. Int. Endod. J. 2019, 52, 1138–1152. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Patel, S.; Dawood, A.; Mannocci, F.; Wilson, R.; Pitt Ford, T. Detection of periapical bone defects in human jaws using cone beam computed tomography and intraoral radiography. Int. Endod. J. 2009, 42, 507–515. [Google Scholar] [CrossRef]
- Stavropoulos, A.; Wenzel, A. Accuracy of cone beam dental CT, intraoral digital and conventional film radiography for the detection of periapical lesions: An ex vivo study in pig jaws. Clin. Oral Investig. 2007, 11, 101–106. [Google Scholar] [CrossRef] [PubMed]
- Keerthana, G.; Singh, N.; Yadav, R.; Duhan, J.; Tewari, S.; Gupta, A.; Sangwan, P.; Mittal, S. Comparative analysis of the accuracy of periapical radiography and cone-beam computed tomography for diagnosing complex endodontic pathoses using a gold standard reference—A prospective clinical study. Int. Endod. J. 2021, 54, 1448–1461. [Google Scholar]
- Pauwels, R.; Beinsberger, J.; Collaert, B.; Theodorakou, C.; Rogers, J.; Walker, A.; Cockmartin, L.; Bosmans, H.; Jacobs, R.; Bogaerts, R.; et al. Effective dose range for dental cone beam computed tomography scanners. Eur. J. Radiol. 2012, 81, 267–271. [Google Scholar] [CrossRef]
- Pope, O.; Sathorn, C.; Parashos, P. A comparative investigation of cone-beam computed tomography and periapical radiography in the diagnosis of a healthy periapex. J. Endod. 2014, 40, 360–365. [Google Scholar] [CrossRef]
- Tsai, P.; Torabinejad, M.; Rice, D.; Azevedo, B. Accuracy of cone-beam computed tomography and periapical radiography in detecting small periapical lesions. J. Endod. 2012, 38, 965–970. [Google Scholar] [CrossRef]
- Petersson, A.; Axelsson, S.; Davidson, T.; Frisk, F.; Hakeberg, M.; Kvist, T.; Norlund, A.; Mejàre, I.; Portenier, I.; Sandberg, H.; et al. Radiological diagnosis of periapical bone tissue lesions in endodontics: A systematic review. Int. Endod. J. 2012, 45, 783–801. [Google Scholar] [CrossRef]
- Yapp, K.E.; Brennan, P.; Ekpo, E. Endodontic disease detection: Digital periapical radiography versus cone-beam computed tomography-a systematic review. J. Med. Imaging 2021, 8, 041205. [Google Scholar] [CrossRef]
- Sullivan, J.E.; di Fiore, P.M.; Koerber, A. Radiovisiography in the detection of apical peri-odontitis. J. Endod. 2000, 26, 32–35. [Google Scholar] [CrossRef] [PubMed]
- Paurazas, S.B.; Geist, J.R.; Pink, F.E.; Hoen, M.M.; Steiman, H.R. Comparison of diagnostic accuracy of digital imaging by using CCD and CMOS-APS sensors with E-speed film in the detection of periapical bony lesions. Oral Surg. Oral Med. Oral Pathol. Oral Radiol. Endod. 2000, 89, 356–362. [Google Scholar] [CrossRef]
- Gudac, J.; Hellén-Halme, K.; Venskutonis, T.; Puisys, A.; Machiulskiene, V. Comparison of Selected Anatomical and Treatment-related Diagnostic Parameters Estimated by Cone-Beam Computed Tomography and Digital Periapical Radiography in Teeth with Apical Periodontitis. J. Oral Maxillofac. Res. 2020, 11, e4. [Google Scholar] [CrossRef] [PubMed]
- Kruse, C.; Spin-Neto, R.; Evar Kraft, D.C.; Vaeth, M.; Kirkevang, L.L. Diagnostic accuracy of cone beam computed tomography used for assessment of apical periodontitis: An ex vivo histopathological study on human cadavers. Int. Endod. J. 2019, 52, 439–450. [Google Scholar] [CrossRef] [PubMed]
- Restrepo-Restrepo, F.A.; Can~as-Jimenez, S.J.; Romero-Albarracın, R.D.; Villa-Machado, P.A.; Perez-Cano, M.I.; Tobon-Arroyave, S.I. Prognosis of root canal treatment in teeth with preoperative apical periodontitis: A study with cone-beam computed tomography and digital periapical radiography. Int. Endod. J. 2019, 52, 1533–1546. [Google Scholar] [CrossRef] [PubMed]
- Patel, S.; Wilson, R.; Dawood, A.; Foschi, F.; Mannocci, F. The detection of periapical pathosis using digital periapical radiography and cone beam computed tomography—Part 2: A 1-year post-treatment follow-up. Int. Endod. J. 2012, 45, 711–723. [Google Scholar] [CrossRef] [PubMed]
- Liang, Y.H.; Jiang, L.; Gao, X.J.; Shemesh, H.; Wesselink, P.R.; Wu, M.K. Detection and measurement of artificial periapical lesions by cone-beam computed tomography. Int. Endod. J. 2014, 47, 332–338. [Google Scholar] [CrossRef] [PubMed]
- Gudac, J.; Hellén-Halme, K.; Machiulskiene, V. Prognostic validity of the Periapical and Endodontic Status Scale for the radiographically assessed 2-year treatment outcomes in teeth with apical periodontitis: A prospective clinical study. BMC Oral Health 2021, 21, 354. [Google Scholar] [CrossRef]
- Durack, C.; Patel, S.; Davies, J.; Wilson, R.; Mannocci, F. Diagnostic accuracy of small volume cone beam computed tomography and intraoral periapical radiography for the detection of simulated external inflammatory root resorption. Int. Endod. J. 2011, 44, 136–147. [Google Scholar] [CrossRef] [PubMed]
- Venskutonis, T.; Plotino, G.; Tocci, L.; Gambarini, G.; Maminskas, J.; Juodzbalys, G. Periapical and endodontic status scale based on periapical bone lesions and endodontic treatment quality evaluation using cone-beam computed tomography. J. Endod. 2015, 41, 190–196. [Google Scholar] [CrossRef] [PubMed]
- Matherne, R.P.; Angelopoulos, C.; Kulild, J.C.; Tira, D. Use of cone-beam computed tomography to identify root canal systems in vitro. J. Endod. 2008, 34, 87–89. [Google Scholar] [CrossRef]
- Sousa, T.O.; Haiter-Neto, F.; Nascimento, E.H.L.; Peroni, L.V.; Freitas, D.Q.; Hassan, B. Diagnostic Accuracy of Periapical Radiography and Cone-beam Computed Tomography in Identifying Root Canal Configuration of Human Premolars. J. Endod. 2017, 43, 1176–1179. [Google Scholar] [CrossRef]
- van der Borden, W.G.; Wang, X.; Wu, M.K.; Shemesh, H. Area and 3-dimensional volumetric changes of periapical lesions after root canal treatments. J. Endod. 2013, 39, 1245–1249. [Google Scholar] [CrossRef]
- Bender, I.B.; Seltzer, S. Roentgenographic and direct observation of experimental lesions in bone: I. J. Am. Dent. Assoc. 1961, 62, 152–160. [Google Scholar] [CrossRef]
- Huumonen, S.; Ørstavik, D. Radiological aspects of apical periodontitis. Endod. Top. 2002, 1, 3–25. [Google Scholar] [CrossRef]
- Huumonen, S.; Orstavik, D. Radiographic follow-up of periapical status after endodontic treatment of teeth with and without apical periodontitis. Clin. Oral Investig. 2013, 17, 2099–2104. [Google Scholar] [CrossRef]
- Maret, D.; Peters, A.O.; Galibourg, A.; Dumoncel, J.; Esclassan, R.; Kahn, J.-L.; Sixou, M.; Telmon, N. Comparison of the accuracy of 3-dimensional cone-beam computed tomography and micro-computed tomography reconstructions by using different voxel sizes. J. Endod. 2014, 40, 1321–1326. [Google Scholar] [CrossRef] [PubMed]
- Spin-Neto, R.; Gotfredsen, E.; Wenzel, A. Impact of voxel size variation on CBCT-based diagnostic outcome in dentistry: A systematic review. J. Digit. Imaging 2013, 26, 813–820. [Google Scholar] [CrossRef] [Green Version]
- Bechara, B.B.; McMahan, A.C.; Moore, W.S.; Noujeim, M.; Geha, H.; Teixeira, F.B. Contrast-to-noise ratio difference in small field of view cone beam computed tomography machines. J. Oral Sci. 2012, 54, 227–232. [Google Scholar] [CrossRef] [PubMed]
- Imura, N.; Pinheiro, E.T.; Gomes, B.P.; Zaia, A.A.; Ferraz, C.C.; Souza-Filho, F.J. The outcome of endodontic treatment: A retrospective study of 2000 cases performed by a specialist. J. Endod. 2007, 33, 1278–1282. [Google Scholar] [CrossRef]
- Liapatas, S.; Nakou, M.; Rontogianni, D. Inflammatory infiltrate of chronic periradicular lesions: An immunohistochemical study. Int. Endod. J. 2003, 36, 464–471. [Google Scholar] [CrossRef] [PubMed]
- Chang, L.; Umorin, M.; Augsburger, R.A.; Glickman, G.N.; Jalali, P. Periradicular Lesions in Cancellous Bone Can Be Detected Radiographically. J. Endod. 2020, 46, 496–501. [Google Scholar] [CrossRef] [PubMed]
- Garcia de Paula-Silva, F.W.; Hassan, B.; Bezerra da Silva, L.A.; Leonardo, M.R.; Wu, M.K. Outcome of root canal treatment in dogs determined by periapical radiography and cone-beam computed tomography scans. J. Endod. 2009, 35, 723–726. [Google Scholar] [CrossRef]
Root Canal Types | Number of Root Canals Identified by Two Radiographic Methods, n | |
---|---|---|
DPR | CBCT | |
Teeth with single root canal (incisors, canines, premolars, molars) | 65 | 59 |
Teeth with two root canals (incisors premolars, molars) | 60 | 72 |
Teeth with three root canals (premolars, molars) | 162 | 156 |
Teeth with four root canals (molars) | 108 | 116 |
Total of root canals, n | 395 | 403 |
Diagnostic Categories of Periapical Radiolucency | ||||
---|---|---|---|---|
S0 | S1 | S2 + S3 | Total (n) (100%) | |
Baseline examination Number, n, and (%) of non-matching scores within diagnostic category, DPR/CBCT | 27/44 * 11/16 (%) | 32/30 * 31/30 (%) | 12/5 * 33/17 (%) | 71/79 18/20 (%) |
Total, n, and (%) of detected radiolucencies by DPR/CBCT | 257/274 65/68 (%) | 102/100 26/25 (%) | 36/29 9/7 (%) | 395/403 100 (%) |
Follow-up examination (after two years) Number, n, and (%) of non-matching scores within diagnostic category, DPR/CBCT | 43/27 * 12/8 (%) | 24/33 * 62/67 (%) | 4/19 * 67/95 (%) | 71/79 18/20 (%) |
Total, n, and (%) of detected radiolucencies by DPR/CBCT | 350/334 89/83 (%) | 39/49 10/12 (%) | 6/20 1/5 (%) | 395/403 100 (%) |
Negative Treatment Outcome CBCT/DPR (403/395) a | Positive Treatment Outcome CBCT/DPR (403/395) a | |||
---|---|---|---|---|
Changed to worse (S0→S1, S0→S2, S0→S3, S1→S2, S1→S3) | Remained unchanged (S2↔S2, S3↔S3) | Remained unchanged (S0↔S0, S1↔S1) | Changed to better (S3→S2, S3→S1, S3→S0, S2→S1, S2→S0, S1→S0) | |
N, number of transition events | 15/11 | 9/3 | 299/275 | 80/106 |
Total (n) | 24/14 | 379/381 |
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Gudac, J.; Hellén-Halme, K.; Maciulskiene, V. The Changes in Size of Periapical Lesions after Root Canal Treatments Assessed by Digital Periapical Radiography and Cone-Beam Computed Tomography: A 2-Years Prospective Clinical Study. Medicina 2022, 58, 1437. https://doi.org/10.3390/medicina58101437
Gudac J, Hellén-Halme K, Maciulskiene V. The Changes in Size of Periapical Lesions after Root Canal Treatments Assessed by Digital Periapical Radiography and Cone-Beam Computed Tomography: A 2-Years Prospective Clinical Study. Medicina. 2022; 58(10):1437. https://doi.org/10.3390/medicina58101437
Chicago/Turabian StyleGudac, Jelena, Kristina Hellén-Halme, and Vita Maciulskiene. 2022. "The Changes in Size of Periapical Lesions after Root Canal Treatments Assessed by Digital Periapical Radiography and Cone-Beam Computed Tomography: A 2-Years Prospective Clinical Study" Medicina 58, no. 10: 1437. https://doi.org/10.3390/medicina58101437
APA StyleGudac, J., Hellén-Halme, K., & Maciulskiene, V. (2022). The Changes in Size of Periapical Lesions after Root Canal Treatments Assessed by Digital Periapical Radiography and Cone-Beam Computed Tomography: A 2-Years Prospective Clinical Study. Medicina, 58(10), 1437. https://doi.org/10.3390/medicina58101437