Zhang HX, Yan ZY, Cui NH, Sun F, Wu BZ. Accuracy of computer-assisted dynamic navigation when performing coronectomy of the mandibular third molar: a pilot study. J Dent. 2023;139: 104762.
Bhalerao A, Marimuthu M, Wahab A, Ayoub A. Dynamic navigation for zygomatic implant placement: a randomized clinical study comparing the flapless versus the conventional approach. J Dent. 2023;130: 104436.
Younis H, Lv C, Xu B, Zhou H, Du L, Liao L, Zhao N, Long W, Elayah SA, Chang X, He L. Accuracy of dynamic navigation compared to static surgical guides and the freehand approach in implant placement: a prospective clinical study. Head Face Med. 2024;20:30.
Article PubMed PubMed Central Google Scholar
Ahn SY, Kim NH, Kim S, Karabucak B, Kim E. 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. 2018;44:665–70.
Zhou W, Zheng Q, Tan X, Song D, Zhang L, Huang D. Comparison of mineral trioxide aggregate and iRoot BP Plus root repair material as root-end filling materials in endodontic microsurgery: a prospective randomized controlled study. J Endod. 2017;43:1–6.
Qu Y, Wen Y, Chen M, Guo K, Huang X, Gu L. Predicting case difficulty in endodontic microsurgery using machine learning algorithms. J Dent. 2023;133: 104522.
Oliveira ACS, Candeiro GTM, Pacheco Da Costa FFN, Gazzaneo ID, Alves FRF, Marques FV. Distance and bone density between the root apex and the mandibular canal: a cone-beam study of 9202 roots from a Brazilian population. J Endod. 2019;45:538–42.e2.
Lu YJ, Chiu LH, Tsai LY, Fang CY. Dynamic navigation optimizes endodontic microsurgery in an anatomically challenging area. J Dent Sci. 2022;17:580–2.
Fu W, Chen C, Bian Z, Meng L. Endodontic microsurgery of posterior teeth with the assistance of dynamic navigation technology: a report of three cases. J Endod. 2022;48:943–50.
Villa-Machado PA, Restrepo-Restrepo FA, Tobón-Arroyave SI. Dynamically guided transantral piezoelectric endodontic microsurgery: a case report with technical considerations. Int Endod J. 2024;57:490–500.
Chen C, Zhang R, Zhang W, Wang F, Wang Z, Qin L, Bian Z, Meng L. Analysis of the accuracy of a dynamic navigation system in endodontic microsurgery: a prospective case series study. J Dent. 2023;134: 104534.
Chen C, Zhang R, Zhang W, Li F, Wang Z, Qin L, Chen Y, Bian Z, Meng L. Clinical and radiological outcomes of dynamic navigation in endodontic microsurgery: a prospective study. Clin Oral Investig. 2023;27:5317–29.
Article PubMed PubMed Central Google Scholar
Liu SM, Peng L, Zhao YJ, Han B, Wang XY, Wang ZH. Accuracy and efficiency of dynamic navigated root-end resection in endodontic surgery: a pilot in vitro study. BMC Oral Health. 2024;24:582.
Article CAS PubMed PubMed Central Google Scholar
Aldahmash SA, Price JB, Mostoufi B, Griffin IL, Dianat O, Tordik PA, Martinho FC. Real-time 3-dimensional dynamic navigation system in endodontic microsurgery: a cadaver study. J Endod. 2022;48:922–9.
Wang Z, Chen C, Qin L, Li F, Chen Y, Meng L. Accuracy and efficiency of endodontic microsurgery assisted by dynamic navigation based on two different registration methods: an in vitro study. J Endod. 2023;49:1199–206.
Janabi A, Tordik PA, Griffin IL, Mostoufi B, Price JB, Chand P, Martinho FC. Accuracy and efficiency of 3-dimensional dynamic navigation system for removal of fiber post from root canal-treated teeth. J Endod. 2021;47:1453–60.
Fouad EM, Abdelbaky M. Dynamic navigation: how far it would go in endodontics? J Dent. 2022;121: 103992.
Jonaityte EM, Bilvinaite G, Drukteinis S, Torres A. Accuracy of dynamic navigation for non-surgical endodontic treatment: a systematic review. J Clin Med. 2022;11:3441.
Article PubMed PubMed Central Google Scholar
Wu M, Liu M, Cheng Y, Tang W, Yan P, Jiang H. Treatment of pulp canal obliteration using a dynamic navigation system: two case reports. J Endod. 2022;48:1441–6.
Nagata K, Okubo M, Saito K, Nakashizu T, Atsumi M, Kawana H. Verification of the accuracy of dynamic navigation for conventional and mouthpiece methods: in vivo study. BMC Oral Health. 2024;24:596.
Article PubMed PubMed Central Google Scholar
Dianat O, Gupta S, Price JB, Mostoufi B. Guided endodontic access in a maxillary molar using a dynamic navigation system. J Endod. 2021;47:658–62.
Karim MH, Faraj BM. Comparative evaluation of a dynamic navigation system versus a three-dimensional microscope in retrieving separated endodontic files: an in vitro study. J Endod. 2023;49:1191–8.
Jain SD, Saunders MW, Carrico CK, Jadhav A, Deeb JG, Myers GL. Dynamically navigated versus freehand access cavity preparation: a comparative study on substance loss using simulated calcified canals. J Endod. 2020;46:1745–51.
Floratos S, Kim S. Modern endodontic microsurgery concepts. Dent Clin North Am. 2017;61:81–91.
Villa-Machado PA, Botero-Ramírez X, Tobón-Arroyave SI. Retrospective follow-up assessment of prognostic variables associated with the outcome of periradicular surgery. Int Endod J. 2013;46:1063–76.
Article CAS PubMed Google Scholar
Liu SM, Zhao YJ, Wang XY, Wang ZH. In vitro evaluation of positioning accuracy of trephine bur at different depths by dynamic navigation. J Peking Univ (Heal Sci). 2022;54:146–52.
Zubizarreta-Macho Á, De Pedro MA, Riad Deglow E, Agustín-Panadero R, Mena ÁJ. Accuracy of computer-aided dynamic navigation compared to computer-aided static procedure for endodontic access cavities: an in vitro study. J Clin Med. 2020;9:129.
Article PubMed PubMed Central Google Scholar
Liu SM, Peng L, Zhao YJ, Han B, Wang XY, Wang ZH. The learning curve of a dynamic navigation system used in endodontic apical surgery. J Dent Sci. 2024;19:2247–55.
Article PubMed PubMed Central Google Scholar
Torres A, Boelen G, Lambrechts P, Pedano MS, Jacobs R. Dynamic navigation: a laboratory study on the accuracy and potential use of guided root canal treatment. Int Endod J. 2021;54:1659–67.
Jain SD, Carrico CK, Bermanis I. 3-dimensional accuracy of dynamic navigation technology in locating calcified canals. J Endod. 2020;46:839–45.
Jeon KJ, Lee C, Choi YJ, Han SS. Anatomical analysis of mandibular posterior teeth for endodontic microsurgery: a cone-beam computed tomographic evaluation. Clin Oral Investig. 2021;25:2391–7.
Kang SH, Kim BS, Kim Y. Proximity of posterior teeth to the maxillary sinus and buccal bone thickness: A biometric assessment using cone-beam computed tomography. J Endod. 2015;41:1839–46.
Jin G, Kim K, Roh B, Lee C, Lee S. Buccal bone plate thickness of the Asian people. J Endod. 2005;31:430–4.
Kim GB, Lee S, Kim H, Yang DH, Kim YH, Kyung YS, Kim CS, Choi SH, Kim BJ, Ha H, Kwon SU, Kim N. Three-dimensional printing: basic principles and applications in medicine and radiology. Korean J Radiol. 2016;17:182–97.
Article PubMed PubMed Central Google Scholar
Mankovich NJ, Samson D, Pratt W, Lew D, Beumer J. Surgical planning using three-dimensional imaging and computer modeling. Otolaryngol Clin North Am. 1994;27:875–89.
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