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改良空心钉固定治疗 Pauwels Ⅲ型股骨颈骨折:一项生物力学研究。

Modified cannulated screw fixation in the treatment of Pauwels type III femoral neck fractures: A biomechanical study.

机构信息

Department of Orthopedic, The First Affiliated Hospital of Jinan University, Guangzhou, China; Clinical Biomechanics and Biomimetic Materials Research Center, Guangdong-Hong Kong-Macao Greater Bay Area, China.

Department of Musculoskeletal Oncology, Sun Yat-sen University Cancer Center, State Key Laboratory of Oncology in South China, Collaborative Innovation Center for Cancer Medicine, Guangzhou, China.

出版信息

Clin Biomech (Bristol). 2020 Apr;74:103-110. doi: 10.1016/j.clinbiomech.2020.02.016. Epub 2020 Feb 29.

Abstract

BACKGROUND

Achieving satisfactory internal fixation for patients with Pauwels type III femoral neck fractures has become a critical problem. The purpose of this study was to compare a common standard internal reduction and fixation method for femoral neck fractures to the modified fixation methods.

METHODS

A computed tomography scan of the femur was performed to make a Three-dimensional (3D) model, and a fracture line was simulated in the femoral neck. 3Dfinite element analysis was carried out for different insertion methods of cannulated tension screws. Six healthy femur specimens were harvested from three formalin-fixed cadavers, and Pauwels type III femoral neck fracture was artificially created in bilateral femurs. The right side was treated with the inverted triangle construct method and the left side by the modified screw fixation method. After fixation, uniaxial compression and maximum load experiments on the bilateral femoral necks were carried out using the non-contact full-field dynamic strain measurement system (VIC-3D) on a pressure testing machine.

FINDINGS

Both 3D finite element analysis and biomechanical study showed that the modified screw fixation method(group D) provided better anti-shearing and anti-rotation properties for Pauwels type III femoral neck fractures, and offered better interfragmentary compression. Therefore, this modified screw fixation method can offer patients a better option for treatment of Pauwels type III femoral neck fractures.

INTERPRETATION

Changing the placement of the anterosuperior screw in the inverted triangle construct as perpendicular to the fracture line has the advantages in anti-shearing, anti-rotation and increasing interfragmentary compression.

摘要

背景

为 Pauwels Ⅲ型股骨颈骨折患者实现满意的内固定已成为一个关键问题。本研究旨在比较股骨颈骨折常用的标准内复位固定方法与改良固定方法。

方法

对股骨进行 CT 扫描以制作三维(3D)模型,并在股骨颈模拟骨折线。对不同的空心拉力螺钉插入方法进行 3D 有限元分析。从 3 具福尔马林固定的尸体中采集 6 个健康股骨标本,在双侧股骨上人为造成 Pauwels Ⅲ型股骨颈骨折。右侧采用倒三角结构方法固定,左侧采用改良螺钉固定方法。固定后,使用压敏试验机上的非接触全场动态应变测量系统(VIC-3D)对双侧股骨颈进行单轴压缩和最大负荷实验。

发现

3D 有限元分析和生物力学研究均表明,改良螺钉固定方法(D 组)对 Pauwels Ⅲ型股骨颈骨折具有更好的抗剪切和抗旋转性能,提供了更好的断端间压缩。因此,这种改良螺钉固定方法可为 Pauwels Ⅲ型股骨颈骨折患者提供更好的治疗选择。

解释

将倒三角结构中前上螺钉的放置位置改为垂直于骨折线,具有抗剪切、抗旋转和增加断端间压缩的优点。

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