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双向压限滑动螺钉治疗股骨颈骨折的有限元分析。

Finite Element Analysis of Femoral Neck Fracture Treated with Bidirectional Compression-Limited Sliding Screw.

机构信息

Department of Anatomy, School of Basic Medical Science, University and Guangdong Provincial Key Laboratory of Medical Biomechanics and Academy of Orthopedics of Guangdong Province, Guangzhou, Guangdong, China (mainland).

Department of Traumatic Orthopedics, The Third Affiliated Hospital, Southern Medical University, Guangzhou, Guangdong, China (mainland).

出版信息

Med Sci Monit. 2021 Mar 30;27:e929163. doi: 10.12659/MSM.929163.

Abstract

BACKGROUND The rate of femoral neck shortening after internal fixation for femoral neck fracture is high and this complication reduces the function of the affected lower limb. The aim of this study was to design a bidirectional compression-limited sliding screw (BCLSC) that can achieve a full balance between retaining the sliding pressure of the ends of and maintaining the length of the femoral neck. MATERIAL AND METHODS We constructed a 3-dimensional model of a Pauwels III femoral neck fracture and models of 3 internal fixation methods (3 cannulated screws [3CS], dynamic hip screw [DHS]+CS, and BCLSC) by finite element analysis (FEA).The finite element model simulated the loading of the human body when standing on 1 leg. Displacement and stress distribution of the models were calculated based on an axial stress of 600 N. RESULTS The peak von Mises stress (VMS) values of fracture ends in the 3CS, DHS+CS and BCLSC groups were 94.687 MPa, 26.375 MPa and 45.698 MPa; the peak VMS values of internal fixed stress were 451.53 MPa, 174.45 MPa, and 337.34 MPa; the peak VMS values of the lateral femoral wall were 70.021 MPa, 53.033 MPa, and 20.009 MPa; maximum displacements of the femoral head were 1.4482 mm, 1.3813 mm, and 1.3889 mm; and the internal fixed displacement peaks were 4.1134 mm, 3.91 mm, and 4.1004 mm, respectively. CONCLUSIONS The FEA showed that compared with the CS, the new BCLSC showed better performance in resisting shearing force for Pauwels III femoral neck fracture, with better mechanical properties. These data provide a basis for further experiments and clinical application.

摘要

背景

股骨颈骨折内固定后股骨颈缩短率高,这种并发症降低了患肢的功能。本研究旨在设计一种双向加压限制滑动螺钉(BCLSC),以实现对股骨颈端滑动压力的保留和长度的维持之间的完全平衡。

材料与方法

我们通过有限元分析(FEA)构建了 Pauwels III 股骨颈骨折的三维模型和 3 种内固定方法(3 枚空心螺钉[3CS]、动力髋螺钉[DHS]+CS 和 BCLSC)的模型。该有限元模型模拟了人体单腿站立时的受力情况。根据 600N 的轴向应力,计算了模型的位移和应力分布。

结果

3CS、DHS+CS 和 BCLSC 组骨折端的峰值 von Mises 应力(VMS)值分别为 94.687MPa、26.375MPa 和 45.698MPa;内固定的峰值 VMS 值分别为 451.53MPa、174.45MPa 和 337.34MPa;外侧股骨壁的峰值 VMS 值分别为 70.021MPa、53.033MPa 和 20.009MPa;股骨头的最大位移分别为 1.4482mm、1.3813mm 和 1.3889mm;内固定的最大位移峰值分别为 4.1134mm、3.91mm 和 4.1004mm。

结论

与 CS 相比,新型 BCLSC 对 Pauwels III 股骨颈骨折的抗剪切力性能更好,力学性能更好。这些数据为进一步的实验和临床应用提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de2b/8019266/35c392f30b41/medscimonit-27-e929163-g001.jpg

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