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Pauwels III型骨折自加压螺钉模型的疲劳试验:一项体外分析

Fatigue testing of a self-compression screw model in Pauwels III fracture: an in vitro analysis.

作者信息

Freitas Anderson, Giordano Vincenzo, Neves Junior Edvalson Francisco, Alves Tavares Paulo, Esteves Pires Robison, Dias Belangero William, Labronici Pedro José

机构信息

Hospital Ortopédico e Medicina Especializada (HOME), Brasília, Brazil.

Hospital Municipal Miguel Couto, Rio de Janeiro, Brazil.

出版信息

Eur J Orthop Surg Traumatol. 2025 Jun 13;35(1):242. doi: 10.1007/s00590-025-04346-w.

Abstract

PURPOSE

Femoral neck fractures (FNFs) have become increasingly common among young adults as a result of high-energy trauma. Despite the variety of implants available for the surgical treatment of FNFs, compelling evidence of clinically uniform outcome is lacking, and high complication rates are still reported. In this scenario, it seems reasonable to investigate novel implants and surgical, especially in Pauwels type III (PIII) FNFs. The objective of this study was to describe the fatigue test results of a construct using the self-compression screw model (X-PIN + P) in PIII FNFs within a validated synthetic bone model.

METHODS

Sawbones® composite femurs were divided into three groups corresponding to 40% (G40 (n = 4)), 50% (G50 (n = 4)), and 70% (G70 (n = 2)) of the mean load values. The test termination endpoints were catastrophic failure (CF) of the construct, displacement of 10 mm, or reaching 500,000 cycles (C500). The variables analysed were the number of cycles up to 5 mm of displacement (C5 mm), total number of cycles up to termination endpoints (TC), and the mode of CF.

RESULTS

In the G40, the test was terminated due to C500 in three specimens and CF in one specimen (peri-implant subtrochanteric fracture with main screw breakage). The test was terminated due to CF in all models in G50 (peri-implant subtrochanteric fracture without screw breakage in three specimens, and varus collapse of the femoral head in one specimen) and in G70 (femoral head fracture without screw breakage in both specimens).

CONCLUSION

In vitro fatigue bench testing of the self-compression screw model X-PIN + P in PIII FNFs yield satisfactory numerical results regarding test termination due to the limit total number of cycles (500,000). Catastrophic failures were more frequently observed in the G50 and G70 after supraphysiologic loads, mainly characterized by a subtrochanteric femur fracture.

摘要

目的

由于高能创伤,股骨颈骨折(FNFs)在年轻人中越来越常见。尽管有多种植入物可用于FNFs的手术治疗,但缺乏临床结果一致的有力证据,且仍有高并发症发生率的报道。在这种情况下,研究新型植入物和手术方法似乎是合理的,特别是在 Pauwels III型(PIII)FNFs中。本研究的目的是描述在经过验证的合成骨模型中,使用自加压螺钉模型(X-PIN + P)治疗PIII型FNFs的结构的疲劳测试结果。

方法

将Sawbones®复合股骨分为三组,分别对应平均负荷值的40%(G40(n = 4))、50%(G50(n = 4))和70%(G70(n = 2))。测试终止终点为结构的灾难性失效(CF)、10毫米的位移或达到500,000次循环(C500)。分析的变量为位移达5毫米时的循环次数(C5毫米)、直至终止终点的总循环次数(TC)以及CF模式。

结果

在G40组中,三个标本因C500而终止测试,一个标本因CF(植入物周围转子下骨折伴主螺钉断裂)而终止测试。在G50组的所有模型中(三个标本为植入物周围转子下骨折且无螺钉断裂,一个标本为股骨头内翻塌陷)以及G70组(两个标本均为股骨头骨折且无螺钉断裂),测试均因CF而终止。

结论

在PIII型FNFs中对自加压螺钉模型X-PIN + P进行体外疲劳台架测试,由于循环总数限制(500,000次),在测试终止方面产生了令人满意的数值结果。在超生理负荷后,G50组和G70组更频繁地观察到灾难性失效,主要表现为转子下股骨骨折。

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