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Research Article
Minimizing the extra-oral time in autogeneous tooth transplantation: use of computer-aided rapid prototyping (CARP) as a duplicate model tooth
Seung-Jong Lee, Euiseong Kim
Restor Dent Endod 2012;37(3):136-141.   Published online August 29, 2012
DOI: https://doi.org/10.5395/rde.2012.37.3.136
AbstractAbstract PDFPubReaderePub
Objectives

The maintenance of the healthy periodontal ligament cells of the root surface of donor tooth and intimate surface contact between the donor tooth and the recipient bone are the key factors for successful tooth transplantation. In order to achieve these purposes, a duplicated donor tooth model can be utilized to reduce the extra-oral time using the computer-aided rapid prototyping (CARP) technique.

Materials and Methods

Briefly, a three-dimensional digital imaging and communication in medicine (DICOM) image with the real dimensions of the donor tooth was obtained from a computed tomography (CT), and a life-sized resin tooth model was fabricated. Dimensional errors between real tooth, 3D CT image model and CARP model were calculated. And extra-oral time was recorded during the autotransplantation of the teeth.

Results

The average extra-oral time was 7 min 25 sec with the range of immediate to 25 min in cases which extra-oral root canal treatments were not performed while it was 9 min 15 sec when extra-oral root canal treatments were performed. The average radiographic distance between the root surface and the alveolar bone was 1.17 mm and 1.35 mm at mesial cervix and apex; they were 0.98 mm and 1.26 mm at the distal cervix and apex. When the dimensional errors between real tooth, 3D CT image model and CARP model were measured in cadavers, the average of absolute error was 0.291 mm between real teeth and CARP model.

Conclusions

These data indicate that CARP may be of value in minimizing the extra-oral time and the gap between the donor tooth and the recipient alveolar bone in tooth transplantation.

Citations

Citations to this article as recorded by  
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    Silvio Llanos, Henry García, Carlos Manresa, Carolina Bonilla, Julio Tebres, Stefanía Requejo, Alessandra Baasch
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  • Extraoral Root-End Resection May Promote Pulpal Revascularization in Autotransplanted Mature Teeth—A Retrospective Study
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  • Combined Application of Virtual Simulation Technology and 3-Dimensional-Printed Computer-Aided Rapid Prototyping in Autotransplantation of a Mature Third Molar
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    International Endodontic Journal.2022; 55(S3): 827.     CrossRef
  • Review on 3D printing in dentistry: conventional to personalized dental care
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    Journal of Biomaterials Science, Polymer Edition.2022; 33(17): 2292.     CrossRef
  • Three-dimensional printing in endodontics: A review of literature
    Jyoti Chauhan, Ida de Noronha de Ataide, Marina Fernandes
    IP Indian Journal of Conservative and Endodontics.2021; 6(4): 198.     CrossRef
  • Pre- and peri-operative factors influence autogenous tooth transplantation healing in insufficient bone sites
    Thanapon Suwanapong, Aurasa Waikakul, Kiatanant Boonsiriseth, Nisarat Ruangsawasdi
    BMC Oral Health.2021;[Epub]     CrossRef
  • European Society of Endodontology position statement: Surgical extrusion, intentional replantation and tooth autotransplantation
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    International Endodontic Journal.2021; 54(5): 655.     CrossRef
  • Successful pulp revascularization of an autotransplantated mature premolar with fragile fracture apicoectomy and plasma rich in growth factors: a 3‐year follow‐up
    J. F. Gaviño Orduña, M. García García, P. Dominguez, J. Caviedes Bucheli, B. Martin Biedma, F. Abella Sans, M. C. Manzanares Céspedes
    International Endodontic Journal.2020; 53(3): 421.     CrossRef
  • Clinical procedures and outcome of surgical extrusion, intentional replantation and tooth autotransplantation – a narrative review
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    International Endodontic Journal.2020; 53(12): 1636.     CrossRef
  • 3D printing in dentistry – Exploring the new horizons
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    Materials Today: Proceedings.2020; 26: 838.     CrossRef
  • The use of 3D additive manufacturing technology in autogenous dental transplantation
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  • Autotransplantation of mature impacted tooth to a fresh molar socket using a 3D replica and guided bone regeneration: two years retrospective case series
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