Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis
Endosseous oral implant is applied for orthodontic anchorage in subjects with multiple tooth agenesis. Its effectiveness under orthodontic loading has been demonstrated clinically and experimentally. This study investigates the deformation and stress on the bone and implant for different bite forces...
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Online Access: | http://dx.doi.org/10.1155/2017/2827953 |
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doaj-33be7ac4863642d69a3330c2925d301b2020-11-24T23:12:01ZengHindawi LimitedBioMed Research International2314-61332314-61412017-01-01201710.1155/2017/28279532827953Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation AnalysisHsin-Chung Cheng0Boe-Yu Peng1May-Show Chen2Chiung-Fang Huang3Yi Lin4Yung-Kang Shen5School of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei, TaiwanSchool of Dentistry, College of Oral Medicine, Taipei Medical University, Taipei, TaiwanDepartment of Dentistry, Taipei Medical University Hospital, Taipei, TaiwanSchool of Dental Technology, College of Oral Medicine, Taipei Medical University, Taipei, TaiwanDepartment of Business Administration, Takming University of Science and Technology, Taipei, TaiwanSchool of Dental Technology, College of Oral Medicine, Taipei Medical University, Taipei, TaiwanEndosseous oral implant is applied for orthodontic anchorage in subjects with multiple tooth agenesis. Its effectiveness under orthodontic loading has been demonstrated clinically and experimentally. This study investigates the deformation and stress on the bone and implant for different bite forces by three-dimensional (3D) finite element (FE) methods. A numerical simulation of deformation and stress distributions around implants was used to estimate the survival life for implants. The model was applied to determine the pattern and distribution of deformations and stresses within the endosseous implant and on supporting tissues when the endosseous implant is used for orthodontic anchorage. A threaded implant was placed in an edentulous segment of a human mandible with cortical and cancellous bone. Analytical results demonstrate that maximum stresses were always located around the implant neck in marginal bone. The results also reveal that the stress for oblique force has the maximum value followed by the horizontal force; the vertical force causes the stress to have the minimum value between implant and bone. Thus, this area should be preserved clinically to maintain the structure and function of a bone implant.http://dx.doi.org/10.1155/2017/2827953 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hsin-Chung Cheng Boe-Yu Peng May-Show Chen Chiung-Fang Huang Yi Lin Yung-Kang Shen |
spellingShingle |
Hsin-Chung Cheng Boe-Yu Peng May-Show Chen Chiung-Fang Huang Yi Lin Yung-Kang Shen Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis BioMed Research International |
author_facet |
Hsin-Chung Cheng Boe-Yu Peng May-Show Chen Chiung-Fang Huang Yi Lin Yung-Kang Shen |
author_sort |
Hsin-Chung Cheng |
title |
Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis |
title_short |
Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis |
title_full |
Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis |
title_fullStr |
Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis |
title_full_unstemmed |
Influence of Deformation and Stress between Bone and Implant from Various Bite Forces by Numerical Simulation Analysis |
title_sort |
influence of deformation and stress between bone and implant from various bite forces by numerical simulation analysis |
publisher |
Hindawi Limited |
series |
BioMed Research International |
issn |
2314-6133 2314-6141 |
publishDate |
2017-01-01 |
description |
Endosseous oral implant is applied for orthodontic anchorage in subjects with multiple tooth agenesis. Its effectiveness under orthodontic loading has been demonstrated clinically and experimentally. This study investigates the deformation and stress on the bone and implant for different bite forces by three-dimensional (3D) finite element (FE) methods. A numerical simulation of deformation and stress distributions around implants was used to estimate the survival life for implants. The model was applied to determine the pattern and distribution of deformations and stresses within the endosseous implant and on supporting tissues when the endosseous implant is used for orthodontic anchorage. A threaded implant was placed in an edentulous segment of a human mandible with cortical and cancellous bone. Analytical results demonstrate that maximum stresses were always located around the implant neck in marginal bone. The results also reveal that the stress for oblique force has the maximum value followed by the horizontal force; the vertical force causes the stress to have the minimum value between implant and bone. Thus, this area should be preserved clinically to maintain the structure and function of a bone implant. |
url |
http://dx.doi.org/10.1155/2017/2827953 |
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