Applications of Surface-Surface Matching Algorithms for Determination of Orthodontic Tooth Movements
Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed...
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| Published in | Computer methods in biomechanics and biomedical engineering Vol. 6; no. 5-6; pp. 353 - 359 |
|---|---|
| Main Authors | , , , |
| Format | Journal Article |
| Language | English |
| Published |
England
Taylor & Francis GroupAbingdon, UK
01.10.2003
|
| Subjects | |
| Online Access | Get full text |
| ISSN | 1025-5842 1476-8259 |
| DOI | 10.1080/10255840310001634403 |
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| Abstract | Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (C
i
) and after treatment (C
f
). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface-surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from C
i
to C
f
. The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes. |
|---|---|
| AbstractList | Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (C-PRE i-/PRE ) and after treatment (C-PRE f-/PRE ). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface- surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from C-PRE i-/PRE to C-PRE f-/PRE. The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes. Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (Ci) and after treatment (Cf). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface-surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from Ci to Cf. The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes. Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (C i ) and after treatment (C f ). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface-surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from C i to C f . The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes. Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (Ci) and after treatment (Cf). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface-surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from Ci to Cf. The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes.Orthodontic tooth movements are described as the differences between initial and final tooth positions. A computer based method for determination of tooth movements for different treatment methods was developed. A total of 20 casts of the upper jaw of patients treated with tooth positioners or fixed appliances were used as a basis for this study. Tooth movement was analysed on casts before (Ci) and after treatment (Cf). The casts were digitized either with a COMT or 3D laser scanning systems. After digitization, the models were superimposed in the palate by using a surface-surface matching algorithm. Tooth surfaces of the orthodontically moved teeth were segmented and determination of tooth movement was accomplished by matching the moved teeth from Ci to Cf. The resulting transformations delivered three dimensional information on translations and rotations. An accuracy of 0.2 mm in translations and 1 degree in rotations could be demonstrated, showing the different efficiency of treatment schemes. |
| Author | Jäger, A. Piesche, K. Keilig, L. Bourauel, C. |
| Author_xml | – sequence: 1 givenname: L. surname: Keilig fullname: Keilig, L. email: bourauel@uni-bonn.de organization: Senior Scientist, Department of Preclinical Education and Dental Research, Dental School , University of Bonn – sequence: 2 givenname: K. surname: Piesche fullname: Piesche, K. organization: Dentist, Department of Preclinical Education and Dental Research, Dental School , University of Bonn – sequence: 3 givenname: A. surname: Jäger fullname: Jäger, A. organization: Professor and Head of Department, Department for Orthodontics , University of Bonn – sequence: 4 givenname: C. surname: Bourauel fullname: Bourauel, C. organization: Privatdozent, Experimental Orthodontics, Department of Orthodontics, Dental School , University of Bonn |
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| Cites_doi | 10.1016/0002-9416(62)90001-5 10.1016/0889-5406(89)90300-4 10.1016/0002-9416(85)90195-2 10.1093/ejo/19.5.491 10.1597/1545-1569(2002)039<0001:TDAOMC>2.0.CO;2 10.1016/S1350-4533(00)00076-X 10.1109/10.133232 10.1016/S0889-5406(96)70036-7 10.1016/0002-9416(76)90257-8 10.1016/0096-6347(45)90101-3 10.1597/1545-1569(1997)034<0052:TDATPC>2.3.CO;2 |
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| References | Burstone CJ (bib3) 1982; 82 bib14 bib15 bib12 Becker U (bib9) bib13 bib10 Burstone CJ (bib6) 1985; 1985 bib11 Lavallee S (bib7) 1991; 1570 bib8 bib5 bib16 bib4 bib1 bib2 |
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| SubjectTerms | Algorithms Computer Simulation Coordinate measurement table Dental Models Diagnosis, Computer-Assisted - methods Humans Image Interpretation, Computer-Assisted - methods Laser scanner Models, Biological Movement - physiology Orthodontics Orthodontics - methods Reproducibility of Results Sensitivity and Specificity Surface-surface matching Therapy, Computer-Assisted - methods Tooth - anatomy & histology Tooth - physiology Tooth Migration Tooth movement Tooth Movement Techniques - methods |
| Title | Applications of Surface-Surface Matching Algorithms for Determination of Orthodontic Tooth Movements |
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