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六足环状外固定器动力化与胫骨力学性能的关系。

The Relation between the Dynamization of Hexapod Circular External Fixator and Tibial Mechanical Properties.

机构信息

College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou, China.

Key Laboratory of Special Purpose Equipment and Advanced Processing Technology, Ministry of Education and Zhejiang Province, Zhejiang University of Technology, Hangzhou, China.

出版信息

Orthop Surg. 2023 Jun;15(6):1677-1684. doi: 10.1111/os.13745. Epub 2023 May 8.

Abstract

OBJECTIVE

Dynamization of the external fixator, defined as gradually decreasing construct-stability of the fixator, is widely accepted as a method for treatment during the late phase of the bone healing process. However, the dynamization is mostly based on the subjective experience of orthopaedists at present, without unified standards and a clear theoretical basis. The objective of the study is to investigate the influence of the dynamization operations on the tibial mechanical properties with a hexapod circular external fixator and standardize the dynamization process.

METHODS

A 3D-printed tibial defects model with Young's modulus of 10.5 GPa and Poisson's ratio of 0.32 simulated the clinically fractured bone. A 10 × ∅ 45 mm silicone sample with Young's modulus of 2.7 MPa and Poisson's ratio of 0.32 simulated the callus in the fracture site. Furthermore, a hexapod circular external fixator whose struts were coded from #1 to #6 was fixed on the model with six half-pins (5 mm diameter). Corresponding to the action of removing and loosening the struts, 17 dynamization operations are designed. For each construct after different dynamization operations, the mechanical environment changes in the fracture site were recorded by a triaxle forces sensor under gradually increasing external load from 0 to 500 N.

RESULTS

The results show that the bone axial load-sharing ratio of each construct in the removal group was generally higher than that in the loosening group. The ratio increased from 92.51 ± 0.74% to 102.68 ± 0.27% with the number of operated struts rising from 2 to 6. Besides, the constructions with the same number of operated struts but with different strut codes such as constructions 3-5, had similar bone axial load-sharing ratios. In addition, the proposed dynamization method of the hexapod circular external fixator can gradually increase the bone axial load-sharing ratio from 90.73 ± 0.19% to 102.68 ± 0.27% and maintain the bone radial load-sharing ratio below 8%.

CONCLUSION

The laboratory study verified the effects of the type of operations and the number of operated struts on the bone axial load-sharing ratio, as well as the slight influence of the choice of the strut code. Besides, a dynamization method of the hexapod circular external fixator was proposed to increase the bone axial load-sharing ratio gradually.

摘要

目的

外固定器动力化,即逐渐降低固定器的结构稳定性,被广泛认为是骨愈合后期治疗的一种方法。然而,目前动力化主要基于骨科医生的主观经验,缺乏统一的标准和明确的理论基础。本研究旨在探讨使用六足环式外固定架对胫骨力学性能的影响,并对动力化过程进行标准化。

方法

使用杨氏模量为 10.5 GPa、泊松比为 0.32 的 3D 打印胫骨缺损模型模拟临床骨折骨,杨氏模量为 2.7 MPa、泊松比为 0.32 的 10×∅45mm 硅橡胶样块模拟骨折部位的骨痂。此外,使用编码为 #1 至 #6 的六根支柱固定在模型上的六足环式外固定架,用六根半针(直径 5mm)固定。对应于去除和松开支柱的作用,设计了 17 次动力化操作。对于不同动力化操作后的每一个结构,在逐渐增加的外部负载从 0 到 500N 的情况下,通过三轴力传感器记录骨折部位的力学环境变化。

结果

结果表明,去除组中每个结构的骨轴向载荷分担率一般高于松动组。随着操作支柱数量从 2 根增加到 6 根,比例从 92.51±0.74%增加到 102.68±0.27%。此外,具有相同操作支柱数量但支柱代码不同的结构,如结构 3-5,具有相似的骨轴向载荷分担率。此外,提出的六足环式外固定架动力化方法可以逐渐将骨轴向载荷分担率从 90.73±0.19%增加到 102.68±0.27%,并将骨径向载荷分担率保持在 8%以下。

结论

实验室研究验证了操作类型和操作支柱数量对骨轴向载荷分担率的影响,以及支柱代码选择的轻微影响。此外,提出了一种六足环式外固定架的动力化方法,可逐渐增加骨轴向载荷分担率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e232/10235163/8d4d3ba2126d/OS-15-1677-g001.jpg

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