Understanding the Stress Distribution on Anatomic Customized Root-Analog Dental Implant at Bone-Implant Interface for Different Bone Densities

Author:

Nimmawitt PawhatORCID,Aliyu Abdul Azeez Abdu,Lohwongwatana Boonrat,Arunjaroensuk SiridaORCID,Puncreobutr Chedtha,Mattheos NikosORCID,Pimkhaokham AtiphanORCID

Abstract

The aim of this study is to assess the stress distribution on the bone tissue and bone-implant interface of a customized anatomic root-analog dental implant (RAI) by means of finite element analysis (FEA) for different types of bone density. A mandibular right second premolar was selected from the CBCT database. A DICOM file was converted to an STL file to create a CAD model in FEA software. The bone boundary model was created, while bone density types I–IV were determined. Von Mises stress was measured at bone tissues and bone-implant interfaces. To validate the models, the RAI was 3D printed through a laser powder-bed fusion (L-PBF) approach. The results revealed that all RAI designs could not cause plastic deformation or fracture resulting in lower stress than the ultimate tensile stress of natural bone and implant. Compared to a conventional screw-type implant, RAIs possess a more favorable stress distribution pattern around the bone tissue and the bone-implant interface. The presence of a porous structure was found to reduce the stress at cancellous bone in type IV bone density.

Funder

90th Anniversary of Chulalongkorn University Ratchadapisek Sompote Fund

Publisher

MDPI AG

Subject

General Materials Science

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