ORIGINAL RESEARCH

Planning orthodontic frontal teeth inclination and estimating bone thickness from cone-beam computed tomography images

Kopetskiy IS1, Meskhiya NG1, Kopetskaya AI1, Eremin DA1, Orekhova DD2
About authors

1 Pirogov Russian National Research Medical University, Moscow, Russia

2 Lomonosov Moscow State University, Moscow, Russia

Correspondence should be addressed: Nana G. Meskhiya
Ostrovityanova, 1, Moscow, 117997; moc.liamg@aklepilin

About paper

Author contribution: Kopetskiy IS analyzed the literature; Meskhiya NG conducted the study, gathered and analyzed clinical data; Kopetskaya AI processed and analyzed source medical records; Eremin DA, Orekhova DD performed data analysis.

Compliance with ethical standards: the study was approved by the Ethics Committee of Piragov Russian National Research Medical University (Protocol No.116 dated March 26, 2012); informed consent was obtained from all study participants or their legal representatives.

Received: 2021-03-16 Accepted: 2021-04-05 Published online: 2021-04-27
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  1. Singatullina DR, Hamitova NH. Harakter techenija retencionnogo perioda u podrostkov posle ortodonticheskogo lechenija v zavisimosti ot sostojanija vegetativnoj nervnoj sistemy. Kazanskij medicinskij zhurnal. 2012; 9 (4): 651–3.
  2. Chibisova MA, Orehova MA, Serova NV. Kliniko-rentgenologicheskaja harakteristika i algoritm diagnosticheskogo issledovanija na konusno-luchevom komp'juternom tomografe pacientov s zabolevanijami parodonta. Luchevaja diagnostika i terapija. 2014; 4: 18–37.
  3. Nanda R. Biomihanika i jestetika v klinicheskoj medicine. M.: MEDpress-inform, 2009; 388 s.
  4. Vanden Bulcke MM, Dermaut LR, Sachdeva RC. Location of centers of resistance for anterior teeth during retraction using the laser reflection technique. Am J Orthod Dentofacial Orthop. 1987; 91: 375–84.
  5. Dathe H, Nägerl H, Kubein-Meesenburg D. A caveat concerning center of resistance. Journal of Dental Biomechanics. 2013; 4: 1–7.
  6. Dubinin AL, Nyashin YuI, Osipenko MA, Elovikova AN, Nyashin MYu. Optimizacija ortodonticheskogo peremeshhenija zubov. Rossijskij zhurnal biomehaniki. 2016; 20 (1): 37–47.
  7. Shkarin VV, Domenyuk DA, Dmitrienko SV, Porfiriadis MP, Fomin IV, Borodina VA. Sovremennye podhody k opredeleniju ugla inklinacii zubov pri diagnostike i planirovanii ortodonticheskogo lechenija. Kubanskij nauchnyj medicinskij vestnik. 2018; 25 (2): 156–65.
  8. Vedeshina YeG. Optimizacija sovremennyh metodov diagnostiki i lechenija pacientov s anomalijami i deformacijami zubocheljustnyh dug [dissertaciya]. Pjatigorsk, 2019; 371 s.
  9. Domenyuk DA, Garazha IS, Karslieva AG, Vedeshina YeG, i dr. Primenenie dostizhenij cheljustno-licevoj rentgenologii v lechenii zubocheljustnyh anomalij Aktual'nye voprosy klinicheskoj stomatologii. V sbornike nauchnyh rabot pod redakciej N. N. Garazhi. Stavropol': Izd-vo StGMU, 2015; s. 119–23.
  10. Vansvanov AM, Ilyasova AM, Ilyasov AM. Rentgenograficheskaja i komp'juterno-tomograficheskaja diagnostika patologii cheljustnolicevoj oblasti. Vestnik KazNMU. 2014; 3 (2).
  11. Dubinin AL, Osipenko MA, Nyashin YuI. Primenenie cifrovyh tehnologij pri biomehanicheskom modelirovanii ortodonticheskogo peremeshhenija zubov. Rossijskij zhurnal biomehaniki. 2019; 23 (3): 359–74.
  12. Yamada C, Kitai N, Kakimoto N, Muraami S, Furukawa S, Takada K. Spatial relationships between the mandibular central incisor and associated alveolar bone in adults with mandibular prognathism. Angle Orthod. 2007; 77: 766–72.
  13. Yu Q, Pan X, Ji G, Shen G. The association between lower incisal inclination and morphology of the supporting alveolar bone — a cone–beam CT study. Int J Oral Sci. 2009; 1: 217–23.