Suppr超能文献

不稳定型温哥华 B1 假体周围股骨骨折固定:新型 C 形记忆合金植入物与环扎钢丝固定的生物力学比较。

Unstable Vancouver B1 periprosthetic femoral fracture fixation: A biomechanical comparison between a novel C-shaped memory alloy implant and cerclage wiring.

机构信息

Department of Biomedical Engineering, Inje University, Gimhae, 50834, 197 Inje-ro, Gimhae-si, Gyeongsangnam-do, Republic of Korea.

Department of Orthopedic Surgery, Soonchunhyang University College of Medicine, Seoul, 04401, 59 Daesagwan-ro, Yongsan-gu, Seoul, Republic of Korea.

出版信息

J Int Med Res. 2024 Mar;52(3):3000605241240946. doi: 10.1177/03000605241240946.

Abstract

BACKGROUND

To compare the biomechanical stability of a novel, C-shaped nickel-titanium shape memory alloy (SMA) implant (C-clip) with traditional cerclage wiring in the fixation of a Vancouver B1 (VB1) periprosthetic femoral fracture (PFF).

METHODS

In total, 18 synthetic femoral fracture models were constructed to obtain unstable VB1 fracture with an oblique fracture line 8 cm below the lesser trochanter. For each model, the distal portion was repaired using a 10-hole locking plate and four distal bi-cortical screws. The proximal portion was repaired using either three, threaded cerclage wirings or three, novel C-shaped implants. Specimens underwent biomechanical testing using axial compression, torsional and four-point bending tests. Each test was performed on three specimens.

RESULTS

The C-clip was statistically significantly stronger (i.e., stiffer) than cerclage wiring in the three biomechanical tests. For axial compression, medians (ranges) were 39 (39-41) and 35 (35-35) N/mm, for the C-clip and cerclage wiring, respectively. For torsion, medians (ranges) were, 0.44 (0.44-0.45) and 0.30 (0.30-0.33) N/mm for the C-clip and cerclage wiring, respectively. For the four-point bending test, medians (ranges) were 39 (39-41) and 28 (28-31) N/mm; for the C-clip and cerclage wiring, respectively.

CONCLUSION

Results from this small study show that the novel, C-shaped SMA appears to be biomechanically superior to traditional cerclage wiring in terms of stiffness, axial compression, torsion and four-point bending, and may be a valuable alternative in the repair of VB1 PFF. Further research is necessary to support these results.

摘要

背景

比较新型 C 形镍钛形状记忆合金(SMA)植入物(C 夹)与传统环形钢丝在固定温哥华 B1(VB1)假体周围股骨骨折(PFF)中的生物力学稳定性。

方法

共构建了 18 个合成股骨骨折模型,以获得小转子下 8cm 处斜行骨折线的不稳定 VB1 骨折。对于每个模型,使用 10 孔锁定板和 4 个远端双皮质螺钉修复远端部分。使用 3 根螺纹环形钢丝或 3 个新型 C 形植入物修复近端部分。标本采用轴向压缩、扭转和四点弯曲试验进行生物力学测试。每个测试在 3 个标本上进行。

结果

在三种生物力学测试中,C 夹均明显强于环形钢丝(即更硬)。在轴向压缩中,C 夹和环形钢丝的中位数(范围)分别为 39(39-41)和 35(35-35)N/mm。在扭转中,C 夹和环形钢丝的中位数(范围)分别为 0.44(0.44-0.45)和 0.30(0.30-0.33)N/mm。在四点弯曲试验中,C 夹和环形钢丝的中位数(范围)分别为 39(39-41)和 28(28-31)N/mm。

结论

这项小型研究的结果表明,新型 C 形 SMA 在刚度、轴向压缩、扭转和四点弯曲方面似乎优于传统环形钢丝,可能是修复 VB1 PFF 的一种有价值的替代方法。需要进一步的研究来支持这些结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9a5/10981230/d4d53e58a169/10.1177_03000605241240946-fig1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验