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J Dent Res Dent Clin Dent Prospects. 2019;13(2): 85-89. doi: 10.15171/joddd.2019.013
PMID: 31592304        PMCID: PMC6773917

Original Article

Investigation of the optimal design of orthodontic mini-implants based on the primary stability: A finite element analysis

Amir Hooman Sadr Haghighi 1, Vahid Pouyafar 2, Ali Navid 2, Mahsa Eskandarinezhad 3, Tannaz Abdollahzadeh Baghaei 1 * ORCID

Cited by CrossRef: 13


1- Amir M, Wani M, Shukla D, Koul R, Chaturvedi T, Bahri R. A Three-dimensional Finite Element Study of Stress and Strain Distribution around Orthodontic Mini-implants of Varying Geometry. 2024;15(3):191 [Crossref]
2- Bauer C, Karl P, Mielke J, Roser C, Lux C, Scheurer M, Keilig L, Bourauel C, Hodecker L. Development and in vitro testing of an orthodontic miniscrew for use in the mandible. J Orofac Orthop. 2024; [Crossref]
3- Shash Y, El-Wakad M, El-Dosoky M, Dohiem M. Evaluation of stresses on mandible bone and prosthetic parts in fixed prosthesis by utilizing CFR-PEEK, PEKK and PEEK frameworks. Sci Rep. 2023;13(1) [Crossref]
4- Ugarte O, Gialain I, Carvalho N, Fukuoka G, Ballester R, Cattaneo P, Roscoe M, Meira J. Can maxilla and mandible bone quality explain differences in orthodontic mini-implant failures?. Biomaterial Investigations in Dentistry. 2021;8(1):1 [Crossref]
5- Benaissa A, Merdji A, Bendjaballah M, Ngan P, Mukdadi O. Stress influence on orthodontic system components under simulated treatment loadings. Computer Methods and Programs in Biomedicine. 2020;195:105569 [Crossref]
6- Shash Y. Mandibular biomechanics rehabilitated with different prosthetic restorations under normal and impact loading scenarios. BMC Oral Health. 2024;24(1) [Crossref]
7- Zhang W, Alghannam F, Zhu Y, Zhang J, Wohl G, Haugen H, Qin Z, Xie G, Fang Q, Shen S. Effects of Drilling Technology on Mini-Implant Primary Stability: A Comparison of the Mechanical Drilling and Femtosecond Laser Ablation. Front Phys. 2021;9 [Crossref]
8- Pouyafar V, Meshkabadi R, Sadr Haghighi A, Navid A. Finite element simulation and statistical investigation of an orthodontic mini-implant’s stability in a novel screw design. Proc Inst Mech Eng H. 2021;235(9):1046 [Crossref]
9- Michelogiannakis D, Javed F, Vastardis H. Mini-screw implant-supported pontics for the transitional management of missing permanent maxillary lateral incisors in children and adolescents: a review of currently available evidence. Eur Arch Paediatr Dent. 2020;21(3):285 [Crossref]
10- Duske K, Turan B, Prinz C, Lenz J, Stahl F, Warkentin M. Functionality testing of an innovative biomechanically optimized and surface-modified orthodontic mini-screw—a comparative study. J Orofac Orthop. 2024; [Crossref]
11- Shash Y, El-Wakad M, Eldosoky M, Dohiem M, Shaker K. Finite-Element Analysis of the Effect of Utilizing Various Material Assemblies in “All on Four” on the Stresses on Mandible Bone and Prosthetic Parts. International Journal of Polymer Science. 2022;2022:1 [Crossref]
12- Sousa-Santos C, Sousa-Santos S, Mendes J, Coelho C, Aroso C, Sousa-Santos P, Mendes J. The Influence of the Diameter of Orthodontic Mini-Implants on Primary Stability: Bending Tests—An In Vitro Study. Materials. 2024;17(13):3149 [Crossref]
13- Hariharan A, Krithika A, Thanya K, Thamarai C, Parameswari D, Dhevishri S. Stress Distribution on Short Implants with Varying Crown Heights – An In vitro Study. 2024;16(Suppl 2):S1498 [Crossref]
14- Arango-Piloneta E, Plaza-Ruiz S, León-Lara D, Munera M, Bedoya-Henao B, Martínez-Gallego T. Stress distribution for mandibular extra-alveolar anchorage at different angles and force magnitudes: a finite element study. Computer Methods in Biomechanics and Biomedical Engineering. 2024;27(12):1587 [Crossref]