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Computer-Aided Design/Computer-Aided Manufacturing (CAD/CAM) - Based Planning and Creation of Orthodontic Appliances

Not Applicable
Conditions
Orthodontics
Interventions
Procedure: orthodontic treatment with prefabricated archwires
Procedure: orthodontic treatment with customized archwires
Registration Number
NCT00871026
Lead Sponsor
Charite University, Berlin, Germany
Brief Summary

In orthodontics, conventional fixed appliances, usually consisting of prefabricated components, require step-by-step adjustment in order to move teeth in the planned direction.

May treatment be improved with customized archwires?

Study hypotheses:

* By using CAD/CAM in planning and fabrication of customized archwires, unnecessary tooth movements can be avoided and teeth can be moved on their direct path to the intended position.

* The application of CAD/CAM improves reproducibility, efficiency, and quality of orthodontic treatment.

Detailed Description

In orthodontics, conventional fixed appliances, usually consisting of prefabricated components, require step-by-step adjustment in order to move teeth in the planned direction. At the moment there is no tool, that allows to predict the treatment result. Using conventional orthodontic treatment methods the orthodontist approaches the final result using the trial-and-error-method, bending the wires in each appointment until both, patient and orthodontist are satisfied. Usually there is only a general treatment plan, but not a detailed treatment plan of each tooth movement. This leads to a longer treatment time and causes more costs. Besides the probability of side effects (such as caries root resorption) increases with the duration of the treatment.

In this case the chosen technology is called SureSmile(R)(by OraMetrix). SureSmile allows the collection 3D-data intraorally and from plaster models, it gives a possibility of computer aided treatment planing (Computer Aided Design) and the manufacturing of customized archwires (Computer Aided Manufacturing).

This new technology promises to reduce the time and effort of an orthodontic treatment providing predictability and quality also minimizing negative side effects.

This technology could - using this diagnostic 3D-system - help to understand orthodontic movement and basic principles of the remodeling of the periodontium and to improve orthodontic mechanics.

Recruitment & Eligibility

Status
UNKNOWN
Sex
All
Target Recruitment
160
Inclusion Criteria
  • treatment with fixed orthodontic appliances is indicated
  • complete secondary dentition
  • age: 11-30
  • in good general health
  • patient is informed about study and agrees to participate
Exclusion Criteria
  • syndromes affecting bones and teeth
  • cleft lip and palate
  • inflammation or reduction (more than 50%) of periodontium
  • intake of drugs affecting tooth movement and bone formation
  • disturbance of bone formation
  • disturbance of thyroidal function
  • pregnancy
  • participation in additional study affecting oral hygiene
  • former therapy with ionized radiation or cytostatic drugs
  • caries (active phase)
  • alcohol dependency

Study & Design

Study Type
INTERVENTIONAL
Study Design
PARALLEL
Arm && Interventions
GroupInterventionDescription
2orthodontic treatment with prefabricated archwiresprefabricated archwires (superelastic)
1orthodontic treatment with customized archwiresCAD/CAM group, customized archwires
Primary Outcome Measures
NameTimeMethod
Duration of the orthodontic treatment (overall and every appointment)every 6 weeks until the end of the treatment
Secondary Outcome Measures
NameTimeMethod
Amount of root resorption comparing x-rays before and after the treatment
Quality measured using a quality index (ABO-Score)

Trial Locations

Locations (1)

Department of Orthodontics, Dentofacial Orthopedics and Pedodontics, Charité - Universitätsmedizin Berlin

🇩🇪

Berlin, Germany

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