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股骨颈系统与 InterTan 钉和三根空心螺钉治疗不稳定型Ⅲ型 Pauwels 股骨颈骨折的生物力学比较。

Biomechanical comparison of the femoral neck system versus InterTan nail and three cannulated screws for unstable Pauwels type III femoral neck fracture.

机构信息

Department of Orthopaedic, General Hospital of Ningxia Medical University, Yinchuan, 750004, Ningxia, China.

Ningxia Medical University, Yinchuan, 750004, Ningxia, China.

出版信息

Biomed Eng Online. 2022 Jun 10;21(1):34. doi: 10.1186/s12938-022-01006-6.

Abstract

BACKGROUND

There are a variety of internal fixation methods for unstable femoral neck fractures (FNFs), but the best method is still unclear. Femoral neck system (FNS) is a dynamic angular stabilization system with cross screws, and is a new internal fixation implant designed for minimally invasive fixation of FNFs. In this study, we conducted a biomechanical comparison of FNS, InterTan nail and three cannulated screws for the treatment of Pauwels III FNFs and investigate the biomechanical properties of FNS.

METHODS

A total of 18 left artificial femurs were selected and randomly divide into Group A (fixation with FNS), Group B (fixation with InterTan nail) and Group C (fixation with three cannulated screws), with 6 specimens in each group. After creating Pauwels type III FNF models, the specimens in each were tested with non-destructive quasi-static tests, including torsion, A-P bending and axial compression tests. The average slope of the linear load-deformation curve obtained from quasi-static tests defines the initial torsional stiffness, A-P bending stiffness, and axial compression stiffness. After cyclic loading test was applied, the overall deformation of models and local deformation of implant holes in each group were assessed. The overall deformation was estimated as the displacement recorded by the software of the mechanical testing apparatus. Local deformation was defined as interfragmental displacement. Data were analyzed by one-way analysis of variance (ANOVA) followed by Bonferroni post hoc test using the SPSS software (version 24.0, IBM, New York, NY, USA). Correlation analysis was performed using Pearson's correlation analysis.

RESULTS

Group B exhibited significantly higher axial stiffness and A-P bending stiffness than the other two groups (P < 0.01), while Group A had significantly higher axial stiffness and A-P bending stiffness than Group C (P < 0.01). Groups A and B exhibited significantly higher torsional stiffness than Group C (P < 0.01), no statistical significance was observed between Groups A and B (P > 0.05). Group B exhibited significantly lower overall and local deformations than the other two groups (P < 0.01), while Group A had significantly lower overall and local deformations than Group C (P < 0.01). Correlation analysis revealed positive correlation between axial stiffness and A-P bending stiffness (r = 0.925, P < 0.01), torsional stiffness (r = 0.727, P < 0.01), between torsional stiffness and A-P bending stiffness; negative correlation between overall, local deformations and axial stiffness (r = - 0.889, - 0.901, respectively, both P < 0.01), and positive correlation between the two deformations (r = - 0.978, P < 0.01).

CONCLUSION

For fixation of unstable FNFs, InterTan nail showed the highest axial stiffness and A-P bending stiffness, followed by FNS, and then three cannulated screws. Torsional stiffness of FNS was comparable to that of the InterTan nail. FNS, as a novel minimally invasive implant, can create good mechanical environment for the healing of unstable FNFs. Clinical studies are needed to confirm the potential advantages of FNS observed in this biomechanical study.

摘要

背景

对于不稳定型股骨颈骨折(FNFs),有多种内固定方法,但最佳方法仍不清楚。股骨颈系统(FNS)是一种带有交叉螺钉的动态角度稳定系统,是为微创固定 FNFs 而设计的新型内固定植入物。在这项研究中,我们对 FNS、InterTan 钉和三根空心螺钉治疗 Pauwels III 型 FNFs 进行了生物力学比较,并研究了 FNS 的生物力学特性。

方法

选择 18 个左侧人工股骨,随机分为 A 组(FNS 固定)、B 组(InterTan 钉固定)和 C 组(三根空心螺钉固定),每组 6 个标本。在创建 Pauwels Ⅲ型 FNF 模型后,对每组标本进行非破坏性准静态测试,包括扭转、A-P 弯曲和轴向压缩测试。准静态测试得到的线性载荷-变形曲线的平均斜率定义为初始扭转刚度、A-P 弯曲刚度和轴向压缩刚度。进行循环加载试验后,评估各组模型的整体变形和植入孔的局部变形。整体变形由力学试验机软件记录的位移估计,局部变形定义为骨折间位移。使用 SPSS 软件(版本 24.0,IBM,纽约,NY,USA)进行单因素方差分析(ANOVA),然后进行 Bonferroni 事后检验进行数据分析。使用 Pearson 相关分析进行相关性分析。

结果

B 组轴向刚度和 A-P 弯曲刚度明显高于其他两组(P<0.01),A 组轴向刚度和 A-P 弯曲刚度明显高于 C 组(P<0.01)。A 组和 B 组扭转刚度明显高于 C 组(P<0.01),A 组和 B 组之间无统计学差异(P>0.05)。B 组整体和局部变形明显低于其他两组(P<0.01),A 组整体和局部变形明显低于 C 组(P<0.01)。相关性分析显示,轴向刚度与 A-P 弯曲刚度(r=0.925,P<0.01)、扭转刚度(r=0.727,P<0.01)呈正相关,扭转刚度与 A-P 弯曲刚度呈正相关;整体和局部变形与轴向刚度呈负相关(r=-0.889、-0.901,均 P<0.01),两者呈正相关(r=-0.978,P<0.01)。

结论

对于不稳定型股骨颈骨折的固定,InterTan 钉的轴向刚度和 A-P 弯曲刚度最高,其次是 FNS,然后是三根空心螺钉。FNS 的扭转刚度与 InterTan 钉相当。FNS 作为一种新型微创植入物,可为不稳定型股骨颈骨折的愈合创造良好的力学环境。需要进行临床研究来证实本生物力学研究中观察到的 FNS 的潜在优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5886/9188240/36de54bf1e0d/12938_2022_1006_Fig1_HTML.jpg

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