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3D-Printing of Functional Biomedical Microdevices via Light- and Extrusion-Based Approaches

机译:通过基于光和挤压的方法对功能性生物医学微型设备进行3D打印

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摘要

3D-printing is a powerful additive manufacturing tool, one that enables fabrication of biomedical devices and systems that would otherwise be challenging to create with more traditional methods such as machining or molding. Many different classes of 3D-printing technologies exist, most notably extrusion-based and light-based 3D-printers, which are popular in consumer markets, with advantages and limitations for each modality. The focus here is primarily on showcasing the ability of these 3D-printing platforms to create different types of functional biomedical microdevices—their advantages and limitations are covered with respect to other classes of 3D-printing, as well as the past, recent, and future efforts to advance the functional microdevice domain. In particular, the fabrication of micromachines/robotics, drug-delivery devices, biosensors, and microfluidics is addressed. The current challenges associated with 3D-printing of functional microdevices are also addressed, as well as future directions to improve both the printing techniques and the performance of the printed products.
机译:3D打印是一种功能强大的增材制造工具,可用于制造生物医学设备和系统,而采用其他传统方法(如机加工或模制)则难以制造。存在许多不同类别的3D打印技术,最显着的是基于挤出的和基于光的3D打印机,它们在消费市场中很受欢迎,每种模式都有其优点和局限性。这里的重点主要是展示这些3D打印平台创建不同类型的功能性生物医学微设备的能力-它们的优势和局限性涵盖了其他类别的3D打印以及过去,最近和将来努力推进功能性微器件领域。特别地,解决了微型机器/机器人,药物输送装置,生物传感器和微流体的制造。还讨论了与功能微型设备的3D打印相关的当前挑战,以及改善打印技术和打印产品性能的未来方向。

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