Suppr超能文献

胫骨高位截骨固定的接骨板轮廓质量对生物力学性能的影响:参数有限元研究。

Effects of plate contouring quality on the biomechanical performance of high tibial osteotomy fixation: A parametric finite element study.

机构信息

Department of Biomedical Engineering, Science and Research branch, Islamic Azad University, Tehran, Iran.

Mechanical Engineering Department, Sharif University of Technology, Tehran, Iran.

出版信息

Proc Inst Mech Eng H. 2022 Mar;236(3):356-366. doi: 10.1177/09544119211069207. Epub 2022 Jan 8.

Abstract

Locking plates have threaded holes, in which threaded-head screws are affixed. Hence, they do not need to be in intimate contact with underlying bone to provide fixation. There are, however, reports that a large distance between the plate and the bone might cause clinical complications such as delayed union or nonunion, screw pull out, and screw and plate breakage. Considering the diversity in the capabilities and costs of different plate customization techniques, the purpose of this study was to investigate the effect of the plate contouring quality on the biomechanical performance of high tibial osteotomy (HTO) fixation. A finite element model of proximal tibia was developed in Abaqus, using the QCT data of a cadaver. The model was then subjected to open-wedge HTO (correction angle 12°) with TomoFix plate fixation. The sagittal curvature of the plate was changed parametrically to provide certain levels of geometrical fit, and the biomechanical performance parameters of fixation were assessed. Results indicated 5%, 9% and 38% increase in the stiffness of the construct, and the von Mises stress in the plate and locking screw just above the osteotomy site, respectively, when the level of fit of plate changed from 0% (initial non-contoured initial shape) to 100% (fully adapted shape). The same change decreased the pressure at the lateral hinge of the osteotomy by 61%, and the mean of the tensile stress on the screw shaft by 12%. It was concluded that the level of fit has conflicting effects on the biomechanical parameters of the HTO fixation system, that is, the structural stiffness, the pressure at the lateral hinge, the stresses in the plate and screws, and the pull out resistance of the screws. In particular, for HTO patients with high quality bone, the optimal level of fit should provide a tradeoff between these parameters.

摘要

锁定板有带螺纹的孔,其中固定有带螺纹头的螺钉。因此,它们不需要与下面的骨头紧密接触就可以提供固定。然而,有报道称,板与骨之间的较大距离可能导致临床并发症,如延迟愈合或不愈合、螺钉拔出、螺钉和板断裂。考虑到不同的板定制技术的能力和成本的多样性,本研究旨在探讨板轮廓质量对胫骨高位截骨(HTO)固定的生物力学性能的影响。使用 Abaqus 开发了一个在尸体 QCT 数据基础上的胫骨近端有限元模型。然后对 TomoFix 板固定的开放式楔形 HTO(矫正角 12°)进行模型分析。板的矢状曲率通过参数化改变以提供一定程度的几何拟合,评估固定的生物力学性能参数。结果表明,当板的拟合水平从 0%(初始未轮廓的初始形状)变化到 100%(完全适应形状)时,构建物的刚度分别增加了 5%、9%和 38%,板和锁定螺钉的 von Mises 应力在截骨部位上方也分别增加了 5%、9%和 38%。同样的变化使截骨术外侧铰链处的压力降低了 61%,螺钉轴上的平均拉伸应力降低了 12%。结论是,拟合水平对 HTO 固定系统的生物力学参数有相互矛盾的影响,即结构刚度、外侧铰链处的压力、板和螺钉上的应力以及螺钉的拔出阻力。特别是对于具有高质量骨的 HTO 患者,最佳的拟合水平应该在这些参数之间取得平衡。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验