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聚合物3D打印综述:医疗应用的材料、工艺及设计策略

Polymer 3D Printing Review: Materials, Process, and Design Strategies for Medical Applications.

作者信息

Arefin Amit M E, Khatri Nava Raj, Kulkarni Nitin, Egan Paul F

机构信息

Mechanical Engineering, Texas Tech University, Lubbock, TX 79409, USA.

出版信息

Polymers (Basel). 2021 May 6;13(9):1499. doi: 10.3390/polym13091499.

Abstract

Polymer 3D printing is an emerging technology with recent research translating towards increased use in industry, particularly in medical fields. Polymer printing is advantageous because it enables printing low-cost functional parts with diverse properties and capabilities. Here, we provide a review of recent research advances for polymer 3D printing by investigating research related to materials, processes, and design strategies for medical applications. Research in materials has led to the development of polymers with advantageous characteristics for mechanics and biocompatibility, with tuning of mechanical properties achieved by altering printing process parameters. Suitable polymer printing processes include extrusion, resin, and powder 3D printing, which enable directed material deposition for the design of advantageous and customized architectures. Design strategies, such as hierarchical distribution of materials, enable balancing of conflicting properties, such as mechanical and biological needs for tissue scaffolds. Further medical applications reviewed include safety equipment, dental implants, and drug delivery systems, with findings suggesting a need for improved design methods to navigate the complex decision space enabled by 3D printing. Further research across these areas will lead to continued improvement of 3D-printed design performance that is essential for advancing frontiers across engineering and medicine.

摘要

聚合物3D打印是一项新兴技术,最近的研究表明其在工业领域,尤其是医学领域的应用越来越广泛。聚合物打印具有优势,因为它能够打印出具有多种特性和功能的低成本功能性部件。在此,我们通过研究与医学应用的材料、工艺和设计策略相关的研究,对聚合物3D打印的最新研究进展进行综述。材料研究促使开发出了具有力学和生物相容性优势特性的聚合物,通过改变打印工艺参数来调整力学性能。合适的聚合物打印工艺包括挤出、树脂和粉末3D打印,这些工艺能够实现定向材料沉积,以设计出具有优势和定制化的结构。设计策略,如材料的分层分布,能够平衡相互冲突的特性,如组织支架的力学和生物学需求。综述的其他医学应用包括安全设备、牙科植入物和药物输送系统,研究结果表明需要改进设计方法,以应对3D打印带来的复杂决策空间。这些领域的进一步研究将导致3D打印设计性能的持续改进,这对于推动工程和医学前沿至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0829/8124560/c7d407fa9ab9/polymers-13-01499-g001.jpg

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