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糖果盒技术固定髌骨下极骨折:有限元分析与生物力学实验。

Candy box technique for the fixation of inferior pole patellar fractures: finite element analysis and biomechanical experiments.

机构信息

Department of Orthopaedics, The Affiliated Hospital of Southwest Medical University, Luzhou, China.

Sichuan Provincial Laboratory of Orthopaedic Engineering, Luzhou, China.

出版信息

BMC Musculoskelet Disord. 2023 Oct 23;24(1):835. doi: 10.1186/s12891-023-06946-1.

Abstract

BACKGROUND

Maintaining effective reduction and firm fixation in inferior pole patellar fractures is a highly challenging task. There are various treatment methods available; although tension-band wiring combined with cerclage wiring (TBWC) is the mainstream approach, its effectiveness is limited. Herein, we propose and evaluate a new technique called candy box (CB), based on separate vertical wiring (SVW), for the treatment of inferior pole patellar fractures. Specifically, we provide biomechanical evidence for its clinical application.

METHODS

Five fixation models were built: SVW combined with cerclage wiring (SVWC); TBWC; modified SVW with the middle (MSVW-A) or upper (MSVW-B) 1/3 of the steel wire reserved, and CB. A finite element analysis was performed to compare the displacement and stress under 100-N, 200-N, 300-N, 400-N and 500-N force loads. Three-dimensional printing technology was utilized to create fracture models, and the average displacement of each model group was compared under a 500-N force.

RESULTS

The results of the finite element analysis indicate that CB technology exhibits significantly lower maximum displacement, bone stress, and wire stress compared to that with other technologies under different loads. Additionally, in biomechanical experiments, the average force displacement in the CB group was significantly smaller than that with other methods under a 500-N force (P < 0.05).

CONCLUSIONS

CB technology has the potential to overcome the limitations of current techniques due to its superior biomechanical characteristics. By incorporating early functional exercise and ensuring strong internal fixation, patient prognosis could be enhanced. However, further clinical trials are needed to fully evaluate the therapeutic effects of CB technology.

摘要

背景

维持下极髌骨骨折的有效复位和牢固固定是一项极具挑战性的任务。有多种治疗方法可供选择;尽管张力带钢丝环扎(TBWC)是主流方法,但效果有限。在此,我们提出并评估了一种新的技术,称为糖果盒(CB),基于单独的垂直布线(SVW),用于治疗下极髌骨骨折。具体来说,我们提供了其临床应用的生物力学证据。

方法

建立了 5 种固定模型:SVW 结合环扎(SVWC);TBWC;保留中间(MSVW-A)或上部(MSVW-B)1/3 的钢丝的改良 SVW,以及 CB。进行了有限元分析,以比较在 100-N、200-N、300-N、400-N 和 500-N 力负载下的位移和应力。利用三维打印技术创建骨折模型,并比较每个模型组在 500-N 力下的平均位移。

结果

有限元分析的结果表明,在不同载荷下,CB 技术与其他技术相比,最大位移、骨应力和钢丝应力显著降低。此外,在生物力学实验中,在 500-N 力下,CB 组的平均力位移明显小于其他方法(P<0.05)。

结论

由于其优越的生物力学特性,CB 技术有可能克服当前技术的局限性。通过早期进行功能锻炼并确保牢固的内固定,可以改善患者的预后。然而,需要进一步的临床试验来全面评估 CB 技术的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62dd/10594795/20f169e6256d/12891_2023_6946_Fig1_HTML.jpg

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