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Medicine

Nøyaktighet i Dental Medicine, en ny måte å måle riktighet og presisjon

Published: April 29, 2014 doi: 10.3791/51374

Materials

Name Company Catalog Number Comments
Reference model individual non-precious metal model, derived from a patient impression
Araldit repair Huntsmen Advanced Material, Basel, Switzerland used for making the base of the reference model
CamBase Dentona, Dortmund, Germany Type IV dental ston for pouring conventional impressions
Identium Kettenbach, Eschenburg, Germany Vinylsiloxanether impression material for conventional impression
inEOS model holder Sirona Dental Systems, Bensheim, Germany used for fixing stone models at the reference scanner
Accutrans Coltene Whaledent, Altstätten, Switzerland used for making the base of thestone models
President putty Coltene Whaledent, Altstätten, Switzerland mix with accutrans for betterstability of the base
Alicona Infinite Focus Alicona Imaging, Graz, Austria Reference scanner 

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References

  1. Wettstein, F., Sailer, I., Roos, M., Hämmerle, C. H. Clinical study of the internal gaps of zirconia and metal frameworks for fixed partial dentures. Eur. J. Oral Sci. 116 (3), 272-279 (2008).
  2. Persson, A. S., Oden, A., Andersson, M., Sandborgh-Englund, G. Digitization of simulated clinical dental impressions: virtual three-dimensional analysis of exactness. Dent. Mater. 25 (7), 929-936 (2009).
  3. Del'Acqua, M. A., Arioli-Filho, J. N., Compagnoni, M. A., Mollo, F. Jr de A Accuracy of impression and pouring techniques for an implant-supported prosthesis. Int. J. Oral Maxillofac. Implants. 23 (2), 226-236 (2008).
  4. Schneider, D., Grunder, U., Ender, A., Hämmerle, C. H. F., Jung, R. E. Volume gain and stability of peri-implant tissue following bone and soft tissue augmentation: 1-year results from a prospective cohort study. Clinical Oral Implants Research. 22 (1), 28-37 (2011).
  5. Windisch, S. I., Jung, R. E., Sailer, I., Studer, S. P., Ender, A., Hämmerle, C. H. F. A new optical method to evaluate three-dimensional volume changes of alveolar contours: a methodological in vitro study. Clinical Oral Implants Research. 18 (5), 545-551 (2007).
  6. Caputi, S., Varvara, G. Dimensional accuracy of resultant casts made by a monophase, one-step and two-step, and a novel two-step putty/light-body impression technique: an in vitro. 99 (4), 274-281 (2008).
  7. Hoyos, A., Soderholm, K. J. Influence of tray rigidity and impression technique on accuracy of polyvinyl siloxane impressions. Int. J. Prosthodont. 24 (1), 49-54 (2011).
  8. Luthardt, R. G., Kuhmstedt, P., Walter, M. H. A new method for the computer-aided evaluation of three-dimensional changes in gypsum materials. Dent. Mater. 19 (1), 19-24 (2003).
  9. Mehl, A., Ender, A., Mörmann, W., Attin, T. Accuracy testing of a new intraoral 3D camera. International Journal of Computerized Dentistry. 12 (1), 11-28 (2009).
  10. Fickl, S., et al. Dimensional changes of the ridge contour after socket preservation and buccal overbuilding: an animal study. J. Clin. Periodontol. 36 (5), 442-448 (2009).
  11. Vlaar, S. T., vander Zel, J. M. Accuracy of dental digitizers. Int. Dent. J. 56 (5), 301-309 (2006).
  12. Ender, A., Mehl, A. Accuracy of complete-arch dental impressions: a new method of measuring trueness and precision. 109 (2), 121-128 (2013).
  13. Ender, A., Mehl, A. Influence of scanning strategies on the accuracy of digital intraoral scanning systems. Int. J. Comput. Dent. 16 (1), 11-21 (2013).
  14. Ender, A., Mehl, A. Full arch scans: conventional versus digital impressions--an in-vitro study. Int. J. Comput. Dent. 14 (1), 11-21 (2011).
  15. Meer, W. J., Andriessen, F. S., Wismeijer, D., Ren, Y. Application of intra-oral dental scanners in the digital workflow of implantology. PLoS One. 7 (8), (2012).
Nøyaktighet i Dental Medicine, en ny måte å måle riktighet og presisjon
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Cite this Article

Ender, A., Mehl, A. Accuracy inMore

Ender, A., Mehl, A. Accuracy in Dental Medicine, A New Way to Measure Trueness and Precision. J. Vis. Exp. (86), e51374, doi:10.3791/51374 (2014).

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