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基于凝血和接触激活的增材制造钛植入物的微观至宏观粗糙度

Micro- to Macroroughness of Additively Manufactured Titanium Implants in Terms of Coagulation and Contact Activation.

作者信息

Klingvall Ek Rebecca, Hong Jaan, Thor Andreas, Bäckström Mikael, Rännar Lars-Erik

出版信息

Int J Oral Maxillofac Implants. 2017 May/Jun;32(3):565-574. doi: 10.11607/jomi.5357.

Abstract

PURPOSE

This study aimed to evaluate how as-built electron beam melting (EBM) surface properties affect the onset of blood coagulation. The properties of EBM-manufactured implant surfaces for placement have, until now, remained largely unexplored in literature. Implants with conventional designs and custom-made implants have been manufactured using EBM technology and later placed into the human body. Many of the conventional implants used today, such as dental implants, display modified surfaces to optimize bone ingrowth, whereas custom-made implants, by and large, have machined surfaces. However, titanium in itself demonstrates good material properties for the purpose of bone ingrowth.

MATERIALS AND METHODS

Specimens manufactured using EBM were selected according to their surface roughness and process parameters. EBM-produced specimens, conventional machined titanium surfaces, as well as PVC surfaces for control were evaluated using the slide chamber model.

RESULTS

A significant increase in activation was found, in all factors evaluated, between the machined samples and EBM-manufactured samples. The results show that EBM-manufactured implants with as-built surfaces augment the thrombogenic properties.

CONCLUSION

EBM that uses Ti6Al4V powder appears to be a good manufacturing solution for load-bearing implants with bone anchorage. The as-built surfaces can be used "as is" for direct bone contact, although any surface treatment available for conventional implants can be performed on EBM-manufactured implants with a conventional design.

摘要

目的

本研究旨在评估电子束熔炼(EBM)成型后的表面特性如何影响血液凝固的起始。迄今为止,文献中对用于植入的EBM制造的植入物表面特性的研究仍很有限。使用EBM技术制造了具有传统设计的植入物和定制植入物,随后将其植入人体。如今使用的许多传统植入物,如牙种植体,都具有经过改性的表面以优化骨向内生长,而定制植入物大多具有机械加工表面。然而,钛本身就显示出有利于骨向内生长的良好材料特性。

材料与方法

根据表面粗糙度和工艺参数选择使用EBM制造的样本。使用载玻片腔室模型对EBM制造的样本、传统机械加工的钛表面以及用于对照的PVC表面进行评估。

结果

在所有评估因素中,发现机械加工样本和EBM制造的样本之间的活化有显著增加。结果表明,具有成型后表面的EBM制造的植入物增强了血栓形成特性。

结论

使用Ti6Al4V粉末的EBM似乎是制造具有骨锚固功能的承重植入物的良好解决方案。成型后的表面可“原样”用于直接骨接触,尽管可用于传统植入物的任何表面处理都可应用于具有传统设计的EBM制造的植入物。

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