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螺旋形锁骨钢板六分区固定角度对生物力学稳定性的影响——一项初步有限元研究

Effect of Sextant Fixating Angle of Spiral Clavicle Plate on Biomechanical Stability-A Preliminary Finite Element Study.

作者信息

Hu Ming-Hsien, Su Po-Feng, Lin Kun-Jhih, Chen Wen-Chuan, Wang Shun-Ping

机构信息

Department of Post-Baccalaureate Medicine, College of Medicine, National Chung Hsing University, Taichung 402202, Taiwan.

Department of Orthopedic, Show Chwan Memorial Hospital, Changhua 500009, Taiwan.

出版信息

Bioengineering (Basel). 2024 Jul 13;11(7):713. doi: 10.3390/bioengineering11070713.

Abstract

INTRODUCTION

A spiral clavicle plate has been accepted for its superior multidirectional compatibility in the treatment of midshaft clavicle fractures from a biomechanical perspective. However, the influence of the sextant angle (spiral level) definition on biomechanical performance has not been clarified. A conceptual finite element analysis was conducted to identify the advantages and drawbacks of spiral clavicle plates with various sextant angle definitions.

METHODS

Conventional superior and three different conceptual spiral plates with sextant angle definitions ranging from 45 to 135 degrees were constructed to restore an OTA 15-B1.3 midshaft clavicle fracture model. Three major loading scenarios (cantilever downward bending, axial compression, and axial torsion) were simulated to evaluate the reconstructed structural stiffness and the stress on the clavicle plate and bone screws.

RESULTS

The spiral clavicle plate demonstrated greater capability in resisting cantilever downward bending with an increase in sextant angle and showed comparable structural stiffness and implant stress compared to the superior clavicle plate. However, weakened resistance to axial compression load was noted for the spiral clavicle plate, with lowered stiffness and increased stress on the clavicle plate and screws as the spiral level increased.

CONCLUSION

The spiral clavicle plate has been reported to offer multidirectional compatibility for the treatment of midshaft clavicle fractures, as well as geometric advantages in anatomical matching and reduced skin prominence after surgery. The current study supports that remarkable cantilever bending strength can be achieved with this plate. However, users must consider the potential drawback of lowered axial compression resistance in safety considerations.

摘要

引言

从生物力学角度来看,螺旋锁骨钢板因其卓越的多方向兼容性而被认可用于治疗锁骨中段骨折。然而,六分角(螺旋水平)定义对生物力学性能的影响尚未明确。进行了一项概念性有限元分析,以确定具有不同六分角定义的螺旋锁骨钢板的优缺点。

方法

构建传统的上置钢板以及三种不同的概念性螺旋钢板,其六分角定义范围为45度至135度,用于恢复OTA 15 - B1.3锁骨中段骨折模型。模拟三种主要加载情况(悬臂向下弯曲、轴向压缩和轴向扭转),以评估重建结构的刚度以及锁骨钢板和骨螺钉上的应力。

结果

随着六分角增加,螺旋锁骨钢板在抵抗悬臂向下弯曲方面表现出更强的能力,并且与上置锁骨钢板相比,其结构刚度和植入物应力相当。然而,注意到螺旋锁骨钢板对轴向压缩载荷的抵抗力减弱,随着螺旋水平增加,其刚度降低,锁骨钢板和螺钉上的应力增加。

结论

据报道,螺旋锁骨钢板在治疗锁骨中段骨折方面具有多方向兼容性,以及在解剖匹配和术后减少皮肤突出方面的几何优势。当前研究支持该钢板可实现显著的悬臂弯曲强度。然而,在安全考虑中,使用者必须考虑轴向压缩抵抗力降低这一潜在缺点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25a7/11273675/44982af7161d/bioengineering-11-00713-g001.jpg

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