1. Sharma R, Muralidharan CG, Verma M, Pannu S, Patrikar S. MRI changes in the temporomandibular joint after mandibular advancement. J Oral Maxillofac Surg. 2020 May;78(5):806-12. [
DOI:10.1016/j.joms.2019.12.028] [
PMID]
2. Khodabakhshian A, Mollaei M, Alimohammadi M, Ghobadi F, Hosseinnataj A, Gholampour A. Assessing the variations of the depth and angle of the submandibular gland fossa and the mandibular canal using cone beam computed tomography (CBCT): Submandibular gland fossa assessment using CBCT. Regen. reconstr. restor. 2024;9.
3. Rodriguez AB, Ayyildiz BG, Ayyildiz H, Narvekar A, Elnagar MH, Schmerman M, et al. CBCT validation study on intraclass correlation for linear measurements in peri-implantitis: an observational study. J Oral Maxillofac Res. 2025 Mar;16(1):e4. [
DOI:10.5037/jomr.2025.16104] [
PMID] [
]
4. Shalabi MM, Darwich KMA, Kheshfeh MN, Hajeer MY. Accuracy of 3D virtual surgical planning compared to the traditional two-dimensional method in orthognathic surgery: A literature review. Cureus. 2024 Nov;16(11):e73477. [
DOI:10.7759/cureus.73477]
5. Dadgar S, Aryana M, Khorankeh M, Mollaei M, Alizadeh-Navaei R, Sobouti F. Morphological evaluation of maxillary arch in unilateral buccally and palatally impacted canines: a cone-beam computed tomography (CBCT)-based study in Northern Iran. Pol J Radiol. 2024 Jun;89:e316-23. [
DOI:10.5114/pjr/188686] [
PMID] [
]
6. Hali H, Salehi Sarookollaei M, Alimohammadi M, Hosseinnataj A, Khalili B, Mollaei M. Localization of impacted maxillary canines and root resorption of neighboring incisors using cone beam computed tomography in people aged 12-20 in Sari. J Mazandaran Univ Med Sci. 2023 Nov;33(1):226-33.
7. Gholampour A, Mollaei M, Alimohammadi M, Yaghoubi S, Hosseinnataj A, Mollazadeh Z. Accuracy of bone height and thickness measurements in cone beam computed tomography in the presence of porcelain fused to metal (PFM) crowns. J Indian Acad Oral Med Radiol. 2024 Oct;36(4):397-401. [
DOI:10.4103/jiaomr.jiaomr_203_24]
8. Li Y, Deng S, Mei L, Li J, Qi M, Su S, et al. Accuracy of alveolar bone height and thickness measurements in cone beam computed tomography: a systematic review and meta-analysis. Oral Surg Oral Med Oral Pathol Oral Radiol. 2019 Dec;128(6):667-79. [
DOI:10.1016/j.oooo.2019.05.010] [
PMID]
9. Fox A, Basrani B, Kishen A, Lam EWN. A novel method for characterizing beam hardening artifacts in cone-beam computed tomographic images. J Endod. 2018 May;44(5):869-74. [
DOI:10.1016/j.joen.2018.02.005] [
PMID]
10. Gholampour A, Mollaei M, Ehsani H, Ghobadi F, Hosseinnataj A, Yazdani M. Evaluation of the accuracy of cone beam computed tomography (CBCT) in the detection of peri-implant fenestration. BMC Oral Health. 2024 Aug;24(1):922. [
DOI:10.1186/s12903-024-04674-z] [
PMID] [
]
11. Ismayılov R, Özgür B. Indications and use of cone beam computed tomography in children and young individuals in a university-based dental hospital. BMC Oral Health. 2023 Dec;23(1):1033. [
DOI:10.1186/s12903-023-03784-4] [
PMID] [
]
12. İşman Ö, Yılmaz HH, Aktan AM, Yilmaz B. Indications for cone beam computed tomography in children and young patients in a Turkish subpopulation. Int J Paediatr Dent. 2017 May;27(3):183-90. [
DOI:10.1111/ipd.12250] [
PMID]
13. Mathew MG, Roopa KB, Soni AJ, Khan MM, Kauser A. Evaluation of clinical success, parental and child satisfaction of stainless steel crowns and zirconia crowns in primary molars. J Family Med Prim Care. 2020 Mar;9(3):1418-23. [
DOI:10.4103/jfmpc.jfmpc_1006_19] [
PMID] [
]
14. Ismail A, Lakschevitz F, MacDonald D, Ford NL. Measurement accuracy in cone beam computed tomography in the presence of metal artifact. Int J Oral Maxillofac Implants. 2022 Jan-Feb;37(1):143-52. [
DOI:10.11607/jomi.9079] [
PMID]
15. Vadiati Saberi B, Khosravifard N, Ghandari F, Hadinezhad A. Detection of peri-implant bone defects using cone-beam computed tomography and digital periapical radiography with parallel and oblique projection. Imaging Sci Dent. 2019 Dec;49(4):265-72. [
DOI:10.5624/isd.2019.49.4.265] [
PMID] [
]
16. García-Sanz V, Bellot-Arcís C, Hernández V, Serrano-Sánchez P, Guarinos J, Paredes-Gallardo V. Accuracy and reliability of cone-beam computed tomography for linear and volumetric mandibular condyle measurements. A human cadaver study. Sci Rep. 2017 Sep;7(1):11993. [
DOI:10.1038/s41598-017-12100-4] [
PMID] [
]
17. Lira de Farias Freitas AP, Cavalcanti YW, Costa FCM, Peixoto LR, Maia AMA, Rovaris K, et al. Assessment of artefacts produced by metal posts on CBCT images. Int Endod J. 2019 Feb;52(2):223-36. [
DOI:10.1111/iej.12999] [
PMID]
18. Fakhar HB, Rashtchian R, Parvin M. Effect of dental implant metal artifacts on accuracy of linear measurements by two cone-beam computed tomography systems before and after crown restoration. J Dent (Tehran). 2017 Nov;14(6):329-36.
19. Adarsh K, Sharma P, Juneja A. Accuracy and reliability of tooth length measurements on conventional and CBCT images: An in vitro comparative study. J Orthod Sci. 2018 Sep;7:17. [
DOI:10.4103/jos.JOS_21_18] [
PMID] [
]
20. Doriguêtto PVT, de Almeida D, de Lima CO, Lopes RT, Devito KL. Assessment of marginal gaps and image quality of crowns made of two different restorative materials: An in vitro study using CBCT images. J Dent Res Dent Clin Dent Prospects. 2022 Fall;16(4):243-50. [
DOI:10.34172/joddd.2022.039] [
PMID] [
]
21. Mehdizadeh M, Erfani A, Soltani P. Comparison of the accuracy of linear measurements in CBCT images with different field of views. Clin Lab Res Dent. 2022 Apr 6;1-4. [
DOI:10.11606/issn.2357-8041.clrd.2022.194059]
22. Ganguly R, Ramesh A, Pagni S. The accuracy of linear measurements of maxillary and mandibular edentulous sites in cone-beam computed tomography images with different fields of view and voxel sizes under simulated clinical conditions. Imaging Sci Dent. 2016 Jun;46(2):93-101. [
DOI:10.5624/isd.2016.46.2.93] [
PMID] [
]
23. Vanderstuyft T, Tarce M, Sanaan B, Jacobs R, de Faria Vasconcelos K, Quirynen M. Inaccuracy of buccal bone thickness estimation on cone-beam CT due to implant blooming: An ex-vivo study. J Clin Periodontol. 2019 Nov;46(11):1134-43. [
DOI:10.1111/jcpe.13183] [
PMID]
24. Fokas G, Vaughn VM, Scarfe WC, Bornstein MM. Accuracy of linear measurements on CBCT images related to presurgical implant treatment planning: A systematic review. Clin Oral Implants Res. 2018 Oct;29 Suppl 16:393-415. [
DOI:10.1111/clr.13142] [
PMID]
25. Moshfeghi M, Amintavakoli M, Ghaznavi D, Ghaznavi A. Effect of slice thickness on the accuracy of linear measurements made on cone beam computed tomography images (invitro). J Dent Sch. 2016 Jun;34(2):100-8.
26. Haas LF, Zimmermann GS, De Luca Canto G, Flores-Mir C, Corrêa M. Precision of cone beam CT to assess periodontal bone defects: a systematic review and meta-analysis. Dentomaxillofac Radiol. 2018 Feb;47(2):20170084. [
DOI:10.1259/dmfr.20170084] [
PMID] [
]
27. Ghaznavi A, Ghaznavi D, Valizadeh S, Vasegh Z, Al-Shuhayeb M. Accuracy of linear measurements made on cone beam computed tomography scans at different magnifications. J contemp med sci. 2019 Sep;5(5). [
DOI:10.22317/jcms.10201907]
28. Sheikhi M, Gholami SA, Ghazizadeh M. Accuracy of CBCT linear measurements to determine the height of alveolar crest to the mental foramen. Avicenna J Dent Res. 2021 Mar;13(1):1-5. [
DOI:10.34172/ajdr.2021.01]
29. Yang FQ, Zhang DH, Huang KD, Yang YF, Liao JM. Image artifacts and noise reduction algorithm for cone-beam computed tomography with low-signal projections. J Xray Sci Technol. 2018 Apr;26(2):227-40. [
DOI:10.3233/XST-17285] [
PMID]