选用高分子材料增材制造下颌骨解剖结构模型的表面粗糙度参数评价

IF 1.1 4区 工程技术 Q4 POLYMER SCIENCE
P. Turek
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引用次数: 0

摘要

制作用于手术的模板或植入物不是一项简单的任务。颅面区域尤其如此,它由几何形状非常复杂的骨组织组成。钛合金在医学上仍被用作可植入材料。然而,由于力学性能和功能性能的不断提高,聚合物材料在医学中的应用范围正在扩大。在外科手术过程中直接或间接使用的每个模型都必须满足许多条件。其中之一是获得表面层的适当条件,这对所应用的外科模板或植入物与活体之间的反应有重大影响。由聚合物材料制成的印刷模型的表面粗糙度参数的知识可以允许表面层的有针对性的改性规划,从而允许在过程中更好地应用。本研究采用添加技术对选定的聚合物材料制成的下颌骨解剖结构的表面粗糙度参数值进行了对比分析研究。在研究过程中,使用了以下材料:聚乳酸(PLA)、聚碳酸酯(PC)、三种光聚丙烯酸树脂(手稿中标记为AR1、AR2和AR3)和聚酰胺(PA11)。在此基础上,利用三维打印技术制作了下颌骨侧断面的物理模型。使用3D接触轮廓仪对模型表面的几何结构进行测量。在确定表面粗糙度的过程中,根据ISO 4288标准对测量数据进行过滤。最后,给出了选定的振幅参数和测试模型表面粗糙度的三维可视化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of surface roughness parameters of anatomical structures models of the mandible made with additive techniques from selected polymeric materials
Making a template or implant for surgery is not a simple task. This is especially true of the craniofacial area, which consists of bone tissues with a very complex geometry. Titanium alloys are still used in medicine as implantable materials. However, due to the continuous improvement of mechanical and functional properties, the scope of  polymeric materials application in medicine is expanding. Each model used directly or indirectly during a surgical procedure must meet many conditions. One of them is to obtain the appropriate condition of the surface layer, which has a significant impact on the reactions between the applied surgical template or implant and the living organism. Knowledge of the printed models made of polymeric materials surface roughness parameters  may allow the targeted modification  planning of the surface layer, allowing better application during the procedure. In this study, the research on the comparative analysis of the obtained values of surface roughness parameters of the anatomical structures of the mandible made of selected polymer materials with the use of additive techniques was presented. In the research process, the following materials were used: polylactic acid (PLA), polycarbonate (PC), three photo polyacrylic resins (marked in the manuscript as AR1, AR2 and AR3) and polyamide (PA11). On the basis of them, physical models of the mandible lateral sections were made using 3D printing techniques. Measurements of the model surfaces geometric structure were carried out using a 3D contact profilometer. In the process of determining the surface roughness, the measurement data was filtered in accordance with the ISO 4288 standard. As a final result, selected amplitude parameters and three-dimensional visualization of the surface roughness of the tested models were presented.
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来源期刊
Polimery
Polimery Materials Science-Polymers and Plastics
CiteScore
2.90
自引率
6.20%
发文量
35
审稿时长
1 months
期刊介绍: The "Polimery" journal, of international circulation, is publishing peerreviewed scientific and technical research papers covering polymer science and technology in the field of polymers, rubbers, chemical fibres and paints. The range of topics covered are raw materials, polymer synthesis, processing and applications of polymers. Apart from scientific and technical research papers the monthly includes technical and commercial information such as reports from fairs and exhibitions as well as home, world and technical news. “Polimery "- an international journal covering the following topics: polymers, rubber, chemical fibres and paints. The Journal is addressed to scientists, managers and engineering staff of universities, Polish Academy of Sciences, R&D institutions, industry, specializing in polymer chemistry, physical chemistry, technology and processing. “Polimery” publishes original, reviewed research, scientific and technology papers in the field of polymer synthesis, analysis, technology and modification, processing, properties, applications and recycling.
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