The Biomechanical Properties of A Modified Distraction Device Used in Mandibular Distraction Osteogenesis for Craniofacial Microsomia Patients: A Simulation Finite Element Analysis Study.

IF 1 4区 医学 Q3 SURGERY Journal of Craniofacial Surgery Pub Date : 2025-01-10 DOI:10.1097/SCS.0000000000011048
Anna Liu, Changjin Huang, Wei Liu, Xiaojun Tang
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Abstract

Objective: Finite element analysis (FEA) of the biomechanical properties of the modified extraoral distractor device used in the mandibular distraction of craniofacial microsomia patients.

Materials and methods: Finite element analysis (FEA) models of 5 patients under 2 working conditions, the instance when the distractor is activated and when the distractor participates in mastication, were included in the current study. To conduct the FEA, load boundary conditions (35.6 N on the distractor for the first working condition and 50 N on the unoperated side, 100 N and 200 N on both sides for the second working condition) were applied. Besides, constraint boundary conditions and contact conditions were also applied.

Results: With 5 or 3 bioabsorbable screws fixing the upper fixing plate, the maximal displacement of the mandible was <3 mm and the maximal stress distributed on distractor and bioabsorbable screws was less than the yield strength of corresponding materials under the 2 working conditions when setting 50 N on the unoperated side and 100 N on both sides for the second working condition. However, when setting 200 N on both sides for the second working condition, the maximal displacement of the mandible slightly increased, and stress distributed on distractor and bioabsorbable screws exceeded the yield strength of corresponding materials in some patients.

Conclusion: In most cases, both 5 and 3 poly-L-lactic acidscrews could firmly fix the distractor on the mandible without plastic deformation, although the situation would be different when the mastication force was too powerful.

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改良牵张装置用于颅面小畸形患者下颌牵张成骨的生物力学特性:模拟有限元分析研究。
目的:对改良口外牵张器用于颅面小症患者下颌牵张的生物力学性能进行有限元分析。材料与方法:本研究采用5例患者在启动牵张器和牵张器参与咀嚼两种工作状态下的有限元分析模型。为进行有限元分析,采用荷载边界条件(第一工况牵引器为35.6 N,未工况一侧为50 N,第二工况两侧分别为100 N和200 N)。此外,还应用了约束边界条件和接触条件。结果:5颗或3颗生物可吸收螺钉固定上固定板时,下颌骨的最大位移为。结论:大多数情况下,5颗和3颗聚l -乳酸螺钉均可将牵张器牢固地固定在下颌骨上,无塑性变形,但咀嚼力过大时情况会有所不同。
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来源期刊
CiteScore
1.70
自引率
11.10%
发文量
968
审稿时长
1.5 months
期刊介绍: ​The Journal of Craniofacial Surgery serves as a forum of communication for all those involved in craniofacial surgery, maxillofacial surgery and pediatric plastic surgery. Coverage ranges from practical aspects of craniofacial surgery to the basic science that underlies surgical practice. The journal publishes original articles, scientific reviews, editorials and invited commentary, abstracts and selected articles from international journals, and occasional international bibliographies in craniofacial surgery.
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