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带有2枚远端螺钉的肱骨近端髓内钉能否提供足够的旋转稳定性?

Does the Proximal Humerus Nail with 2 Distal Screws Provide Sufficient Rotational Stability?

作者信息

An Ki Yong, Park Tae Gyu, Kim Min Young

机构信息

Department of Orthopedic Surgery, Kwangju Christian Hospital, Gwangju, Korea.

出版信息

Clin Orthop Surg. 2025 Feb;17(1):148-156. doi: 10.4055/cios23150. Epub 2024 Nov 6.

Abstract

BACKGROUD

Proximal humerus nails, frequently used for managing proximal humerus fractures, significantly enhance rotational stability and reinforce fractured fragments. Few research exists regarding the optimal number and positioning of distal screws. This study aimed to assess the stability of diverse screw configurations and scrutinize screw distribution and bone stress via finite element analysis.

METHODS

The humerus intramedullary nail (Humerus Interlocking Nail System; TDM) underwent assessment using finite element analysis applied to a humerus model. Three groups were established based on varying distal screw numbers and locations: all 3 distal locking holes were used in group 1; 2 screws (dynamic hole and proximal static hole) in group 2, and 2 screws (dynamic hole and distal static hole) in group 3. Finite element analysis computed stress distribution within the implant and bone for each group. A 1-mm fracture gap was simulated at the surgical neck, and stress distributions were analyzed in both normal and osteoporotic bone models.

RESULTS

Using two screws did not compromise rotational stability. Stress distribution analysis revealed stability across all groups without reaching failure strength. Group 3 exhibited a minor rise in component 11 (direct stress [force per unit area] acting on the positive and negative 1 faces in the 1-axis. direction) and component 22 (direct stress [force per unit area] acting on the positive and negative 2 faces in the 2-axis direction) stress, remaining below failure strength thresholds. Group 1 exhibited the lowest von Mises stress in the nail and screws, while groups 2 and 3 did not reach failure strength levels. Findings remained consistent in the osteoporotic model.

CONCLUSIONS

All 3 groups demonstrated rotational stability concerning stress distribution, indicating that using 2 screws for distal fixation does not adversely affect stability. This suggests the potential for saving surgical time and reducing radiation exposure without compromising stability.

摘要

背景

肱骨近端钉常用于治疗肱骨近端骨折,可显著提高旋转稳定性并加固骨折碎片。关于远端螺钉的最佳数量和位置的研究较少。本研究旨在通过有限元分析评估不同螺钉配置的稳定性,并研究螺钉分布和骨应力。

方法

使用应用于肱骨模型的有限元分析对肱骨髓内钉(肱骨交锁钉系统;TDM)进行评估。根据不同的远端螺钉数量和位置建立三组:第1组使用所有3个远端锁定孔;第2组使用2枚螺钉(动力孔和近端静力孔),第3组使用2枚螺钉(动力孔和远端静力孔)。有限元分析计算每组植入物和骨内的应力分布。在手术颈部模拟1毫米的骨折间隙,并在正常和骨质疏松骨模型中分析应力分布。

结果

使用两枚螺钉不会损害旋转稳定性。应力分布分析显示所有组均具有稳定性,未达到破坏强度。第3组在分量11(作用于1轴方向正负1面上的直接应力[单位面积力])和分量22(作用于2轴方向正负2面上的直接应力[单位面积力])应力方面略有上升,但仍低于破坏强度阈值。第1组在钉和螺钉中表现出最低的von Mises应力,而第2组和第3组未达到破坏强度水平。在骨质疏松模型中的结果保持一致。

结论

所有3组在应力分布方面均表现出旋转稳定性,表明使用2枚螺钉进行远端固定不会对稳定性产生不利影响。这表明在不影响稳定性的情况下,有可能节省手术时间并减少辐射暴露。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f5d/11791494/dc67dec4d3fd/cios-17-148-g001.jpg

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