Caetano GFR,
Soares MQS, Oliveira LB, Junqueira JLC, Nascimento MCC. Two-dimensional
radiographs versus cone-beam computed tomography in planning mini-implant
placement: A systematic review. J Clin Exp Dent. 2022;14(8):e669-77.
doi:10.4317/jced.59384
https://doi.org/10.4317/jced.59384
___________
References
1.
Song HN, Hong C, Banh R, Ohebsion T, Asatrian G, Leung HY, Wu BM, Moon W.
Mechanical stability and clinical applicability assessment of novel
orthodontic mini-implant design. Angle Orthod. 2013;83:832-41. |
|
|
|
2.
Antoszewska-Smith J, Sarul M, Łyczek J, Konopka T, Kawala B. Effectiveness of
orthodontic miniscrew implants in anchorage reinforcement during en-masse
retraction: A systematic review and meta-analysis. Am J Orthod Dentofacial
Orthop. 2017;151:440-455. |
|
|
|
3.
Perillo L, Jamilian A, Shafieyoon A, Karimi H, Cozzani M. Finite element
analysis of miniscrew placement in mandibular alveolar bone with varied
angulations. Eur J Orthod. 2015;37:56-9. |
|
|
|
4.
Davis D, Krishnaraj R, Duraisamy S, Ravi K, Dilip S, Charles A, Sushil NC.
Comparison of Rate of Canine Retraction and Anchorage Potential between
Mini-implant and Conventional Molar Anchorage: An In vivo Study. Contemp Clin
Dent. 2018;9:337-342. PMid:30166823
PMCid:PMC6104377 |
|
|
|
5.
Rivis O, Potapchuk A, Goncharuk-KhomynM, Bokoch A. Use of Mini-Implant
Anchorage For Second Molar Mesialization: Comprehensive Approach For
Treatment Efficiency Analysis. Pesqu Bras Odontol Clin Integr. 2020;20:e5262. |
|
|
|
6.
Ali D, Mohammed H, Koo SH, Kang KH, Kim SC. Three-dimensional evaluation of
tooth movement in Class II malocclusions treated without extraction by
orthodontic mini-implant anchorage. Korean J Orthod. 2016;46:280-9. |
|
|
|
7.
Aras I, Tuncer AV. Comparison of anterior and posterior mini-implant-assisted
maxillary incisor intrusion: Root resorption and treatment efficiency. Angle
Orthod. 2016;86:746-52. |
|
|
|
8.
Murakami-Malaquias-Silva F, Rosa EP, Almeida PA, Schalch TO, Tenis CA,
Negreiros RM, Horliana RF, Garcez AS, Fernandes MUR, Tortamano A, Motta LJ,
Bussadori SK, Horliana ACRT. Evaluation of the effects of photobiomodulation
on orthodontic movement of molar verticalization with mini-implant: A
randomized double-blind protocol study. Medicine (Baltimore). 2020;99:e19430. |
|
|
|
9.
Plaza SP. Orthodontic traction of a transmigrated mandibular canine using
mini-implant: a case report and review. J Orthod. 2016;43:314-321. |
|
|
|
10.
Winsauer H, Vlachojannis C, Bumann A, Vlachojannis J, Chrubasik S. Paramedian
vertical palatal bone height for mini-implant insertion: a systematic review.
Eur J Orthod. 2014;36:541-9. |
|
|
|
11.
Montigny M. Mini-implant assisted rapid palatal expansion: New perspectives.
J Dentofacial Anom Orthod 2017;20:405. |
|
|
|
12.
Liou EJ, Pai BC, Lin JC. Do miniscrews remain stationary under orthodontic
forces? Am J Orthod Dentofacial Orthop. 2004;126:42-7. |
|
|
|
13.
Alves M Jr, Baratieri C, Mattos CT, Araújo MT, Maia LC. Root repair after
contact with mini-implants: systematic review of the literature. Eur J
Orthod. 2013;35:491-9. |
|
|
|
14.
Kuroda S, Tanaka E. Risks and complications of miniscrew anchorage in
clinical orthodontics. Japan Dent Sci Rev. 2014;50:79-85. |
|
|
|
15.
de Rezende Barbosa GL, Ramírez-Sotelo LR, Távora de M, de Almeida SM.
Vertical measurements for planning palatal mini-implants in lateral
radiography and cone beam computed tomography. Implant Dent. 2014;23:588-92. |
|
|
|
16.
Gutmacher Z, Machtei EE, Hirsh I, Zigdon-Giladi H, Horwitz J. A comparative
study on the use of digital panoramic and periapical radiographs to assess
proximal bone height around dental implants. Quintessence Int. 2016;47:441-6. PMid:26949765 |
|
|
|
17.
Meleşcanu Imre M, Preoteasa E, Țâncu A, Preoteasa CT. Imaging technique for
the complete edentulous patient treated conventionally or with mini implant
overdenture. J Med Life. 2013;6:86-92. PMid:23599828
PMCid:PMC3624656 |
|
|
|
18.
AlSamak S, Gkantidis N, Bitsanis E, Christou P. Assessment of potential
orthodontic mini-implant insertion sites based on anatomical hard tissue
parameters: a systematic review. Int J Oral Maxillofac Implants. 2012;27:875-87. PMid:22848890 |
|
|
|
19.
Abbassy MA, Sabban HM, Hassan AH, Zawawi KH. Evaluation of mini-implant sites
in the posterior maxilla using traditional radiographs and cone-beam computed
tomography. Saudi Med J. 2015;36:1336-41. |
|
|
|
20.
Kau CH, Richmond S, Palomo JM, Hans MG. Three-dimensional cone beam
computerized tomography in orthodontics. J Orthod. 2005;32:282-93. |
|
|
|
21.
Lyu X, Guo J, Chen L, Gao Y, Liu L, Pu L, Lai W, Long H. Assessment of
available sites for palatal orthodontic mini-implants through cone-beam
computed tomography. Angle Orthod. 2020;90:516-523. https://doi.org/10.2319/070719-457.1 |
|
|
|
22.
Palomo JM, Kau CH, Palomo LB, Hans MG. Three-dimensional cone beam
computerized tomography in dentistry. Dent Today. 2006;25:130, 132-5. PMid:17128717 |
|
|
|
23.
Park JH, Tai K, Owtad P. 3-dimensional cone-beam computed tomography
superimposition: A review. Seminars in Orthodontics. 2015;21:263-73. |
|
|
|
24.
Schropp L, Stavropoulos A, Gotfredsen E, Wenzel A. Comparison of panoramic
and conventional cross-sectional tomography for preoperative selection of
implant size. Clin Oral Implants Res. 2011;22:424-9. |
|
|
|
25.
Oenning AC, Jacobs R, Pauwels R, Stratis A, Hedesiu M, Salmon B; DIMITRA
Research Group, http://www.dimitra.be. Cone-beam CT in paediatric dentistry:
DIMITRA project position statement. Pediatr Radiol. 2018;48:308-316. |
|
|
|
26.
Bennemann R, Baxmann M, Keilig L, Reimann S, Braumann B, Bourauel C.
Evaluating miniscrew position using orthopantomograms compared to cone-beam
computed tomography. J Orofac Orthop. 2012;73:236-48. |
|
|
|
27.
Tepedino M, Cornelis MA, Chimenti C, Cattaneo PM. Correlation between tooth
size-arch length discrepancy and interradicular distances measured on CBCT
and panoramic radiograph: an evaluation for miniscrew insertion. Dental Press
J Orthod. 2018;23:39.e1-39.e13. |
|
|
|
28.
Alharbi F, Almuzian M, Bearn D. Miniscrews failure rate in orthodontics:
systematic review and meta-analysis. Eur J Orthod. 2018;40:519-530. |
|
|
|
29.
Mohammed H, Wafaie K, Rizk MZ, Almuzian M, Sosly R, Bearn DR. Role of
anatomical sites and correlated risk factors on the survival of orthodontic
miniscrew implants: a systematic review and meta-analysis. Prog Orthod. 2018;19:36. |
|
|
|
30.
Alsamak S, Psomiadis S, Gkantidis N. Positional guidelines for orthodontic
mini-implant placement in the anterior alveolar region: a systematic review.
Int J Oral Maxillofac Implants. 2013;28:470-9. |
|
|
|
31.
Moher D, Liberati A, Tetzlaff J, Altman DG; PRISMA Group. Preferred reporting
items for systematic reviews and meta-analyses: the PRISMA statement. PLoS
Med. 2009;6:e1000097. |
|
|
|
32.
Whiting PF, Rutjes AW, Westwood ME, Mallett S, Deeks JJ, Reitsma JB, Leeflang
MM, Sterne JA, Bossuyt PM; QUADAS-2 Group. QUADAS-2: a revised tool for the
quality assessment of diagnostic accuracy studies. Ann Intern Med. 2011;155:529-36. |
|
|
|
33.
Landin M, Jadhav A, Yadav S, Tadinada A. A comparative study between currently
used methods and Small Volume-Cone Beam Tomography for surgical placement of
mini implants. Angle Orthod. 2015;85:446-53. |
|
|
|
34.
Watanabe H, Deguchi T, Hasegawa M, Ito M, Kim S, Takano-Yamamoto T.
Orthodontic miniscrew failure rate and root proximity, insertion angle, bone
contact length, and bone density. Orthod Craniofac Res. 2013;16:44-55. |
|
|
|
35.
Möhlhenrich SC, Kniha K, Peters F, Chhatwani S, Prescher A, Hölzle F, et al.
Anatomical assessment by cone beam computed tomography with the use of
lateral cephalograms to analyse the vertical bone height of the anterior
palate for orthodontic mini-implants. Orthod Craniofac Res. 2021;24:78-86. |
|
|
|
36.
Jung BA, Wehrbein H, Wagner W, Kunkel M. Preoperative diagnostic for palatal
implants: Is CT or CBCT necessary? Clin Implant Dent Relat Res. 2012;14:400-5. |
|
|
|
37.
An JH, Kim YI, Kim SS, Park SB, Son WS, Kim SH. Root proximity of miniscrews
at a variety of maxillary and mandibular buccal sites: Reliability of
panoramic radiography. Angle Orthod. 2019;89:611-616. |
|
|
|
38.
Jung BA, Wehrbein H, Heuser L, Kunkel M. Vertical palatal bone dimensions on
lateral cephalometry and cone-beam computed tomography: implications for
palatal implant placement. Clin Oral Implants Res. 2011;22:664-8. |
|
|
|
39.
Kalra S, Tripathi T, Rai P, Kanase A. Evaluation of orthodontic mini-implant
placement: a CBCT study. Prog Orthod. 2014;15:61. |
|
|
|
40.
Kyung HM, Park HS, Bae SM, Sung JH, Kim IB. Development of orthodontic
micro-implants for intraoral anchorage. J Clin Orthod. 2003;37:321-8; quiz
314. PMid:12866214 |
|
|
|
41.
Wehrbein H, Merz BR, Diedrich P. Palatal bone support for orthodontic implant
anchorage--a clinical and radiological study. Eur J Orthod. 1999;21:65-70. |
|
|
|
42.
Baumgaertel S. Quantitative investigation of palatal bone depth and cortical
bone thickness for mini-implant placement in adults. Am J Orthod Dentofacial
Orthop. 2009;136:104-8. |
|
|
|
43.
Bernhart T, Vollgruber A, Gahleitner A, Dörtbudak O, Haas R. Alternative to
the median region of the palate for placement of an orthodontic implant. Clin
Oral Implants Res. 2000;11:595-601. |
|
|
|
44.
Gahleitner A, Podesser B, Schick S, Watzek G, Imhof H. Dental CT and
orthodontic implants: imaging technique and assessment of available bone volume
in the hard palate. Eur J Radiol. 2004;51:257-62. |
|
|
|
45.
Kim HJ, Yun HS, Park HD, Kim DH, Park YC. Soft-tissue and cortical-bone
thickness at orthodontic implant sites. Am J Orthod Dentofacial Orthop.
2006;130:177-82. |
|
|
|
46.
Neumann G, Pompeo DD, Haje OAE, Medeiros GHF, Furtado A, Rosário HD, et al.
Cone-Beam Computed Tomography Evaluation of Vertical Bone Thickness of
Midpalatal Suture Area in Young Patients: A Pilot Study. J Clin Diag Res.
2018;12:ZC24-6. |
|
|
|
47.
Aksoy S, Kelahmet U, Hincal E, Oz U, Orhan K. Comparison of linear and
angular measurements in CBCT scans using 2D and 3D rendering software. Int J
ArtifOrgans. 2016;30:777-84. PMid:22065798
PMCid:PMC3528152 |
|
|
|
48.
Calle-Morocho J, Morales-Vadillo R, Guevara-Canales J, Alva-Cuneo C. A
comparative study of digital lateral radiography and virtual cone-beam
computed assisted cephalogram in cephalometric measurements. J Oral Res
2018;7:372-81. |
|
|
|
49.
Oz U, Orhan K, Abe N. Comparison of linear and angular measurements using
two-dimensional conventional methods and three-dimensional cone beam CT
images reconstructed from a volumetric rendering program in vivo. Dentomaxillofac
Radiol. 2011;40:492-500. |
|
|
|
50.
Pauwels R, Beinsberger J, Collaert B, Theodorakou C, Rogers J, Walker A, et
al. Effective dose range for dental cone beam computed tomography scanners.
Eur J Radiol. 2012;81:267-71. |
|
|
|
51.
Patel S, Dawood A, Whaites E, Pitt Ford T. New dimensions in endodontic
imaging: part 1. Conventional and alternative radiographic systems. Int Endod
J. 2009;42:447-62. |
|
|
|
52.
Yassaei S, Ezoddini-Ardakani F, Ostovar N. Predicting the actual length of
premolar teeth on the basis of panoramic radiology. Indian J Dent Res.
2010;21:468-73. |
|
|
|
53.
Mckee IW, Williamson PC, Lam EW, Heo G, Glover KE, Major PW. The accuracy of
4 panoramic units in the projection of mesiodistal tooth angulations. Am J
Orthod Dentofacial Orthop. 2002;121:166-75;quiz 192. |
|
|
|
54.
Schnelle MA, Beck FM, Jaynes RM, Huja SS. A radiographic evaluation of the
availability of bone for placement of miniscrews. Angle Orthod. 2004;74:832-7. PMid:15673148 |
|
|
|
55.
Khan W, Shetty P, Gajapurada J. A new guiding template for mini-implant
placement in orthodontics. J Indian Orthod Soc. 2018;52:219-20. |
|
|
|
56.
Yu JJ, Kim GT, Choi YS, Hwang EH, Paek J, Kim SH, Huang JC. Accuracy of a
cone beam computed tomography-guided surgical stent for orthodontic
mini-implant placement. Angle Orthod. 2012;82:275-83. |