首页> 外文期刊>Journal of Engineering and Science in Medical Diagnostics and Therapy >A Proof of Concept Study of the Mechanical Behavior of Lattice Structures Used to Design a Shoulder Hemi-Prosthesis
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A Proof of Concept Study of the Mechanical Behavior of Lattice Structures Used to Design a Shoulder Hemi-Prosthesis

机译:概念验证研究的机械晶格结构用于设计的行为肩膀Hemi-Prosthesis

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摘要

Lattice structures offer great benefits when employed in medical implants for cell attachment and growth (osseointegration), minimization of stress shielding phenomena, and weight reduction. This study is focused on a proof of concept for developing a generic shoulder hemi-prosthesis, from a patient-specific case of a 46-years-old male with a tumor on the upper part of his humerus. A personalized biomodel was designed and a lattice structure was integrated in its middle portion, to lighten weight without affecting humerus' mechanical response. To select the most appropriate lattice structure, three different configurations were initially tested: tetrahedral vertex centroid (TVC), hexagonal prism vertex centroid (HPVC), and cubic diamond (CD). They were fabricated in resin by digital light processing and its mechanical behavior was studied via compression testing and finite element modeling (FEM). The selected structure according to the results was the HPVC, which was integrated in a digital twin of the biomodel to validate its mechanical performance through FEM but substituting the bone material model with a biocompatible titanium alloy (Ti_6Al_4V) suitable for prostheses fabrication. Results of the simulation showed acceptable levels of Von Mises stresses (325 MPa max.), below the elastic limit of the titanium alloys, and a better response (52 MPa max.) in a model with equivalent elastic properties, with stress performance in the same order of magnitude than the showed in bone's material model.
机译:当晶格结构提供极大的好处用于医疗植入细胞附件和增长(骨整合),最小化应力屏蔽现象,和减肥。本研究关注的概念证明开发一个通用的肩膀hemi-prosthesis,46岁的从一个特定的情况下男性肿瘤上的一部分肱骨。一个晶格结构集成在它的中间在不影响部分,减轻重量肱骨的机械反应。适当的晶格结构,三个不同的配置最初测试:四面体顶点重心(TVC)、六角棱镜顶点质心(HPVC)和立方金刚石(CD)。在树脂制作的数字光处理和其力学行为研究通过压缩测试和有限的元素建模(FEM)。结果显示是HPVC,集成在一个数字biomodel的双胞胎通过有限元法验证其力学性能但替代骨材料模型可以使钛合金的生物相容性(Ti_6Al_4V)合适假肢制造。模拟显示·冯·米塞斯的可以接受的水平压力(325 MPa max),低于弹性极限钛合金,更好的响应(52MPa max)与等效弹性模型属性,相同应力性能比显示骨的数量级材料模型。

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