Additive Manufacturing of Medical Microdevices

Renc Saracaydin, S. Hara
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Abstract

Additive manufacturing is a growing field, but its application in the fabrication of medical microdevices has not been fully explored. Traditionally, medical microdevices are manufactured via a combination of techniques such as photolithography, laser-cutting, and micromolding, which collectively have challenges such as multiple fabrication steps, limited design freedom, high fabrication cost, and significant fabrication time. Micro vat photopolymerization is presented here as an alternative method to produce four different microscale medical devices that have applications in microfluidics, drug delivery, and bioscaffolding. In terms of minimum feature size and resolution, the presented structures are comparable, if not superior, to literature quoted parts fabricated through conventional manufacturing methods. The fabrication steps, process parameters, design considerations, learnings, and future research directions are outlined.
医用微型设备的增材制造
增材制造是一个新兴的领域,但其在医疗微器件制造中的应用尚未得到充分的探索。传统上,医疗微设备是通过光刻、激光切割和微成型等技术的组合来制造的,这些技术共同面临着诸如多个制造步骤、有限的设计自由度、高制造成本和显著的制造时间等挑战。本文介绍了微缸光聚合作为一种替代方法来生产四种不同的微尺度医疗设备,这些设备在微流体、药物输送和生物支架方面有应用。在最小特征尺寸和分辨率方面,所提出的结构与文献引用的通过传统制造方法制造的部件相媲美,如果不是优越的话。概述了制备步骤,工艺参数,设计注意事项,学习和未来的研究方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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