College of Engineering, The University of Georgia, Athens, GA, 30605, USA.
National Institutes of Health, Bethesda, MD, USA.
Int J Comput Assist Radiol Surg. 2017 Nov;12(11):2023-2032. doi: 10.1007/s11548-017-1545-1. Epub 2017 Mar 4.
Origami-based biomedical device design is an emerging technology due to its ability to be deployed from a minimal foldable pattern to a larger volume. This paper aims to review state-of-the-art origami structures applied in the medical device field.
Publications and reports of origami structure related to medical device design from the past 10 years are reviewed and categorized according to engineering specifications, including the application field, fabrication material, size/volume, deployment method, manufacturability, and advantages.
This paper presents an overview of the biomedical applications of devices based on origami structures, including disposable sterilization covers, cardiac catheterization, stent grafts, encapsulation and microsurgery, gastrointestinal microsurgery, laparoscopic surgical grippers, microgrippers, microfluidic devices, and drug delivery. Challenges in terms of materials and fabrication, assembly, modeling and computation design, and clinical adoptability are discussed at the end of this paper to provide guidance for future origami-based design in the medical device field.
Concepts from origami can be used to design and develop novel medical devices. Origami-based medical device design is currently progressing, with researchers improving design methods, materials, fabrication techniques, and folding efficiency.
基于折纸的生物医学设备设计是一种新兴技术,因为它能够从最小的可折叠模式展开到更大的体积。本文旨在回顾应用于医疗器械领域的折纸结构的最新技术。
回顾了过去 10 年中与折纸结构相关的医疗器械设计的出版物和报告,并根据工程规范进行了分类,包括应用领域、制造材料、尺寸/体积、展开方法、可制造性和优势。
本文概述了基于折纸结构的医疗器械的生物医学应用,包括一次性消毒盖、心脏导管术、支架移植物、封装和微创手术、胃肠道微创手术、腹腔镜手术夹具、微夹具、微流控装置和药物输送。本文最后讨论了在材料和制造、组装、建模和计算设计以及临床适用性方面的挑战,为医疗器械领域的未来折纸设计提供指导。
折纸的概念可用于设计和开发新型医疗器械。基于折纸的医疗器械设计目前正在取得进展,研究人员正在改进设计方法、材料、制造技术和折叠效率。