Three dimensional finite element analysis of the stress distribution around the mandibular posterior implant during non-working movement according to the amount of cantilever

被引:12
作者
Park, Ji-Man [1 ]
Kim, Hyun-Joo
Park, Eun-Jin [1 ]
Kim, Myung-Rae [2 ]
Kim, Sun-Jong [2 ]
机构
[1] Ewha Womans Univ, Dept Prosthodont, Seoul 158710, South Korea
[2] Ewha Womans Univ, Dept Oral & Maxillofacial Surg, Seoul 158710, South Korea
关键词
Finite element analysis; Implant prosthesis; Cantilever; Stress distribution; FIXED PARTIAL PROSTHESES; DENTAL IMPLANT; OSSEOINTEGRATED IMPLANTS; LENGTH; BONE; REDUCTION; RIDGES; SYSTEM;
D O I
10.4047/jap.2014.6.5.361
中图分类号
R78 [口腔科学];
学科分类号
1003 ;
摘要
PURPOSE. In case of large horizontal discrepancy of alveolar ridge due to severe resorption, cantilevered crown is usually an unavoidable treatment modality. The purpose of this study was to evaluate the clinical criteria for the placement of the aforementioned implant crown. MATERIALS AND METHODS. The mandible model with 2 mm thick cortical bone and cancel bus bone was fabricated from CT cross-section image. An external connection type implant was installed and cantilevered crowns with increasing offset of 3, 4, 5, 6, and 7 mm were connected. Vertical load and 30 degrees oblique load of 300 N was applied and stress around bone and implant component was analyzed. A total of 14 cases were modeled and finite element analysis was performed using COSMOS Works (Solid works Inc, USA). RESULTS. As for the location of the vertical load, the maximum stress generated on the lingual side of the implant became larger according to the increase of offset distance. When the oblique load was applied at 30 degrees, the maximum stress was generated on the buccal side and its magnitude gradually decreased as the distance of the offset load increased to 5 mm. After that point, the magnitude of implant component's stress increased gradually. CONCLUSION. The results of this study suggest that for the patient with atrophied alveolar ridge following the loss of molar teeth, von-Mises stress on implant components was the lowest under the 30 degrees oblique load at the 5 mm offset point. Further studies for the various crown height and numbers of occusal points are needed to generalize the conclusion of present study.
引用
收藏
页码:361 / 371
页数:11
相关论文
共 50 条
[31]   A three-dimensional finite element analysis of the stress distribution on morse taper implants surface [J].
Toniollo, Marcelo Bighetti ;
Macedo, Ana Paula ;
Silveira Rodrigues, Renata Cristina ;
Ribeiro, Ricardo Faria ;
Chiarello de Mattos, Maria da Gloria .
JOURNAL OF PROSTHODONTIC RESEARCH, 2013, 57 (03) :206-212
[32]   Comparison of Single-Standing or Connected Implants on Stress Distribution in Bone of Mandibular Overdentures: A Two-Dimensional Finite Element Analysis [J].
Tabata, Lucas Fernando ;
Assuncao, Wirley Goncalves ;
Ricardo Barao, Valentim Adelino ;
Gomes, Erica Alves ;
Delben, Juliana Aparecida ;
Capello de Sousa, Edson Antonio ;
Rocha, Eduardo Passos .
JOURNAL OF CRANIOFACIAL SURGERY, 2010, 21 (03) :696-702
[33]   Extrasinus Zygomatic Implant Placement in the Rehabilitation of the Atrophic Maxilla: Three-Dimensional Finite Element Stress Analysis [J].
Romeed, Shihab A. ;
Hays, Robert Nigel ;
Malik, Raheel ;
Dunne, Stephen M. .
JOURNAL OF ORAL IMPLANTOLOGY, 2015, 41 (02) :E1-E6
[34]   Three-dimensional finite element analysis of stress distribution in peri-implant bone with relined dentures and different heights of healing caps [J].
dos Santos, M. B. F. ;
da Silva Neto, J. P. ;
Consani, R. L. X. ;
Mesquita, M. F. .
JOURNAL OF ORAL REHABILITATION, 2011, 38 (09) :691-696
[35]   Effects of diameters of implant and abutment screw on stress distribution within dental implant and alveolar bone: A three-dimensional finite element analysis [J].
Shen, Yen -Wen ;
Huang, Heng-Li ;
Hsu, Jui-Ting ;
Fuh, Lih-Jyh .
JOURNAL OF DENTAL SCIENCES, 2024, 19 (02) :1126-1134
[36]   Three-dimensional finite element stress analysis of SKY implant system [J].
Kalanovic, M. ;
Zdravkovic-Petrovic, N. ;
Milosevic, M. ;
Nikolic, D. ;
Zdravkovic, N. ;
Filipovic, N. ;
Kojic, M. .
JOURNAL OF THE SERBIAN SOCIETY FOR COMPUTATIONAL MECHANICS, 2010, 4 (02) :87-96
[37]   Analysis of Stress Distribution on the Bone around an Implant Placed in the Anterior Maxilla Using Three Different Abutment Angulations by Means of Finite Element Analysis [J].
Shende, Snehal ;
Jadhav, Amit ;
Edake, Dhairaysheel N. ;
Patil, Amit Hemraj ;
Patil, Hansraj ;
Agrawal, Nitu .
JOURNAL OF PHARMACY AND BIOALLIED SCIENCES, 2021, 13 (06) :S1591-S1596
[38]   Association between implant apex and sinus floor in posterior maxilla dental implantation: A three-dimensional finite element analysis [J].
Yan, Xu ;
Zhang, Xinwen ;
Chi, Weichao ;
Ai, Hongjun ;
Wu, Lin .
EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2015, 9 (03) :868-876
[39]   Stress Distribution in Single Dental Implant System: Three-Dimensional Finite Element Analysis Based on an In Vitro Experimental Model [J].
Edwards Rezende, Carlos Eduardo ;
Chase-Diaz, Melody ;
Costa, Max Doria ;
Albarracin, Max Laurent ;
Paschoeto, Gabriela ;
Capello Sousa, Edson Antonio ;
Rubo, Jose Henrique ;
Sanches Borges, Ana Flavia .
JOURNAL OF CRANIOFACIAL SURGERY, 2015, 26 (07) :2196-2200
[40]   Influence of Implant Collar Design on Stress and Strain Distribution in the Crestal Compact Bone: A Three-Dimensional Finite Element Analysis [J].
Shen, Wan-Ling ;
Chen, Chen-Sheng ;
Hsu, Ming-Lun .
INTERNATIONAL JOURNAL OF ORAL & MAXILLOFACIAL IMPLANTS, 2010, 25 (05) :901-910