Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology
Volume 113, Issue 2 , Pages 260-267 , February 2012

Three-dimensional assessment of impacted canines and root resorption using cone beam computed tomography

  • Snehlata Oberoi, DDS

      Affiliations

    • Associate Professor, Center for Craniofacial Anomalies, Department of Orofacial Sciences, School of Dentistry, University of California, San Francisco, San Francisco, CA
    • Corresponding Author InformationReprint requests: Snehlata Oberoi, DDS, Associate Clinical Professor, Division of Orthodontics, Department of Orofacial Sciences, School of Dentistry, University of California, San Francisco, S747 Parnassas Avenue, San Francisco, CA 94143-044
  • ,
  • Stephanie Knueppel, BS

      Affiliations

    • Dental Student, School of Dentistry, University of California, San Francisco, San Francisco, CA

Received 20 May 2010 ,Revised 4 March 2011 ,Accepted 18 March 2011.

References 

  1. Mason C , Papadakou P , Roberts GJ . The radiographic localization of impacted maxillary canines: a comparison of methods . Eur J Orthod . 2001;23:25–34
  2. Preda L , La Fianza A , Di Maggio EM , Dore R , Schifino MR , Campani R , et al.  The use of spiral computed tomography in the localization of impacted maxillary canines . Dentomaxillofac Radiol . 1997;26:236–241
  3. Stewart JA , Heo G , Glover KE , Williamson PC , Lam EW , Major PW . Factors that relate to treatment duration for patients with palatally impacted maxillary canines . Am J Orthod Dentofac Orthop . 2001;119:216–225
  4. Walker L , Enciso R , Mah J . Three-dimensional localization of maxillary canines with cone-beam computed tomography . Am J Orthod Dentofac Orthop . 2005;128:418–423
  5. Fernandez E , Bravo LA , Canteras M . Eruption of the permanent upper canine: a radiologic study . Am J Orthod Dentofac Orthop . 1998;113:414–420
  6. Elefteriadis JN , Athanasiou AE . Evaluation of impacted canines by means of computerized tomography . Int J Adult Orthodon Orthognath Surg . 1996;11:257–264
  7. Ericson S , Kurol J . Resorption of maxillary lateral incisors caused by ectopic eruption of the canines (A clinical and radiographic analysis of predisposing factors) . Am J Orthod Dentofac Orthop . 1988;94:503–513
  8. Shapira Y , Kuftinec MM . Early diagnosis and interception of potential maxillary canine impaction . J Am Dent Assoc . 1998;129:1450–1454
  9. Leifert S , Jonas IE . Dental anomalies as a microsymptom of palatal canine displacement . J Orofac Orthop . 2003;64:108–120
  10. Peck S , Peck L , Kataja M . The palatally displaced canine as a dental anomaly of genetic origin . Angle Orthod . 1994;64:249–256
  11. Ericson S , Kurol PJ . Resorption of incisors after ectopic eruption of maxillary canines: a CT study . Angle Orthod . 2000;70:415–423
  12. Ericson S , Kurol J . CT diagnosis of ectopically erupting maxillary canines—a case report . Eur J Orthod . 1988;10:115–121
  13. Becker A , Smith P , Behar R . The incidence of anomalous maxillary lateral incisors in relation to palatally-displaced cuspids . Angle Orthod . 1981;51:24–29
  14. Waitzman AA , Posnick JC , Armstrong DC , Pron GE . Craniofacial skeletal measurements based on computed tomography: part II (Normal values and growth trends) . Cleft Palate Craniofac J . 1992;29:118–128
  15. Liu DG , Zhang WL , Zhang ZY , Wu YT , Ma XC . Localization of impacted maxillary canines and observation of adjacent incisor resorption with cone-beam computed tomography . Oral Surg Oral Med Oral Pathol Oral Radiol Endod . 2008;105:91–98
  16. Boeddinghaus R , Whyte A . Current concepts in maxillofacial imaging . Eur J Radiol . 2008;66:396–418
  17. Scarfe WC , Farman AG , Sukovic P . Clinical applications of cone-beam computed tomography in dental practice . J Can Dent Assoc . 2006;72:75–80
  18. Alqerban A , Jacobs R , Lambrechts P , Loozen G , Willems G . Root resorption of the maxillary lateral incisor caused by impacted canine: a literature review . Clin Oral Investig . 2009;13:247–255
  19. Lou L , Lagravere MO , Compton S , Major PW , Flores-Mir C . Accuracy of measurements and reliability of landmark identification with computed tomography (CT) techniques in the maxillofacial area: a systematic review . Oral Surg Oral Med Oral Pathol Oral Radiol Endod . 2007;104:402–411
  20. Maini A , Durning P , Drage N . Resorption: within or without? (The benefit of cone-beam computed tomography when diagnosing a case of an internal/external resorption defect) . Br Dent J . 2008;204:135–137
  21. Bland JM , Altman DG . Statistical methods for assessing agreement between two methods of clinical measurement . Lancet . 1986;1:307–310
  22. Nagpal A , Pai KM , Setty S , Sharma G . Localization of impacted maxillary canines using panoramic radiography . J Oral Sci . 2009;51:37–45
  23. Chen J , Li S , Fang S . Quantification of tooth displacement from cone-beam computed tomography images . Am J Orthod Dentofac Orthop . 2009;136:393–400
  24. Haney SJ , Nicoll R , Mansueto M . Functional impressions for complete denture fabrication (A modified jump technique) . Tex Dent J . 2010;127:377–384
  25. Kau CH , Bozic M , English J , Lee R , Bussa H , Ellis RK , et al.  Cone-beam computed tomography of the maxillofacial region—an update . Int J Med Robot . 2009;5:366–380
  26. Oberoi S , Gill P , Chigurupati R , Hoffman WY , Hatcher DC , Vargervik K . Three-dimensional assessment of the eruption path of the canine in individuals with bone-grafted alveolar clefts using cone beam computed tomography . Cleft Palate Craniofac J . 2010;47:507–512
  27. Ludlow JB , Davies-Ludlow LE , Brooks SL , Howerton WB . Dosimetry of 3 CBCT devices for oral and maxillofacial radiology: CB Mercuray, NewTom 3G and i-CAT . Dentomaxillofac Radiol . 2006;35:219–226
  28. Alqerban A , Jacobs R , Fieuws S , Willems G . Comparison of two cone beam computed tomographic systems versus panoramic imaging for localization of impacted maxillary canines and detection of root resorption . Eur J Orthod . 2011;33:93–102
  29. Ericson S , Kurol J . Radiographic assessment of maxillary canine eruption in children with clinical signs of eruption disturbance . Eur J Orthod . 1986;8:133–140
  30. Kamburoglu K , Kursun S . A comparison of the diagnostic accuracy of CBCT images of different voxel resolutions used to detect simulated small internal resorption cavities . Int Endod J . 2010;43:798–807

PII: S1079-2104(11)00209-5

doi: 10.1016/j.tripleo.2011.03.035

Oral Surgery, Oral Medicine, Oral Pathology, Oral Radiology
Volume 113, Issue 2 , Pages 260-267 , February 2012