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基于数学曲面函数的气道支架设计与3D打印

Mathematical surface function-based design and 3D printing of airway stents.

作者信息

Yilmaz Bengi, Kara Bilge Yilmaz

机构信息

Department of Biomaterials, University of Health Sciences Turkey, 34668, Istanbul, Turkey.

Experimental Medicine Research and Application Center, University of Health Sciences Turkey, 34662, Istanbul, Turkey.

出版信息

3D Print Med. 2022 Aug 6;8(1):24. doi: 10.1186/s41205-022-00154-8.

Abstract

BACKGROUND

Three-dimensional (3D) printing is a method applied to build a 3D object of any shape from a digital model, and it provides crucial advantages especially for transferring patient-specific designs to clinical settings. The main purpose of this study is to introduce the newly designed complex airway stent models that are created through mathematical functions and manufactured with 3D printing for implementation in real life.

METHODS

A mathematical modeling software (MathMod) was used to design five different airway stents. The highly porous structures with designated scales were fabricated by utilizing a stereolithography-based 3D printing technology. The fine details in the microstructure of 3D printed parts were observed by a scanning electron microscope (SEM). The mechanical properties of airway stents with various designs and porosity were compared by compression test.

RESULTS

The outputs of the mathematical modeling software were successfully converted into 3D printable files and airway stents with a porosity of more than 85% were 3D printed. SEM images revealed the layered topography of high-resolution 3D printed parts. Compression tests have shown that the mathematical function-based design offers the opportunity to adjust the mechanical strength of airway stents without changing the material or manufacturing method.

CONCLUSIONS

A novel approach, which includes mathematical function-based design and 3D printing technology, is proposed in this study for the fabrication of airway stents as a promising tool for future treatments of central airway pathologies.

摘要

背景

三维(3D)打印是一种用于从数字模型构建任何形状三维物体的方法,它具有诸多关键优势,特别是在将患者特异性设计应用于临床环境方面。本研究的主要目的是介绍新设计的复杂气道支架模型,这些模型通过数学函数创建并采用3D打印制造,以便在实际中应用。

方法

使用数学建模软件(MathMod)设计了五种不同的气道支架。利用基于立体光刻的3D打印技术制造具有指定尺度的高度多孔结构。通过扫描电子显微镜(SEM)观察3D打印部件微观结构中的精细细节。通过压缩试验比较了不同设计和孔隙率的气道支架的力学性能。

结果

数学建模软件的输出成功转换为3D可打印文件,并3D打印出孔隙率超过85%的气道支架。SEM图像显示了高分辨率3D打印部件的分层形貌。压缩试验表明,基于数学函数的设计提供了在不改变材料或制造方法的情况下调整气道支架机械强度的机会。

结论

本研究提出了一种新方法,包括基于数学函数的设计和3D打印技术,用于制造气道支架,作为未来治疗中央气道疾病的一种有前景的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c21/9356489/6b065f4d3f1b/41205_2022_154_Fig1_HTML.jpg

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