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用于血管内训练的人工血管模型(3D打印)

Artificial vascular models for endovascular training (3D printing).

作者信息

Torres Inez, De Luccia Nelson

机构信息

Discipline of Vascular and Endovascular Surgery, Department of Surgery, São Paulo University Medical School, Rua Oscar Freire, 1546, ap 33, Pinheiros, São Paulo - SP 05409-010, Brazil.

Discipline of Vascular and Endovascular Surgery, Department of Surgery, São Paulo University Medical School, São Paulo, Brazil.

出版信息

Innov Surg Sci. 2018 Aug 11;3(3):225-234. doi: 10.1515/iss-2018-0020. eCollection 2018 Sep.

Abstract

The endovascular technique has led to a revolution in the care of patients with vascular disease; however, acquiring and maintaining proficiency over a broad spectrum of procedures is challenging. Three-dimensional (3D) printing technology allows the production of models that can be used for endovascular training. This article aims to explain the process and technologies available to produce vascular models for endovascular training, using 3D printing technology. The data are based on the group experience and a review of the literature. Different 3D printing methods are compared, describing their advantages, disadvantages and potential roles in surgical training. The process of 3D printing a vascular model based on an imaging examination consists of the following steps: image acquisition, image post-processing, 3D printing and printed model post-processing. The entire process can take a week. Prospective studies have shown that 3D printing can improve surgical planning, especially in complex endovascular procedures, and allows the production of efficient simulators for endovascular training, improving residents' surgical performance and self-confidence.

摘要

血管内技术给血管疾病患者的治疗带来了一场革命;然而,要在广泛的手术操作中掌握并保持熟练程度具有挑战性。三维(3D)打印技术能够制作可用于血管内训练的模型。本文旨在解释利用3D打印技术制作用于血管内训练的血管模型的过程和可用技术。数据基于团队经验及文献综述。对不同的3D打印方法进行了比较,描述了它们的优缺点以及在外科训练中的潜在作用。基于影像学检查进行3D打印血管模型的过程包括以下步骤:图像采集、图像后处理、3D打印及打印模型后处理。整个过程可能需要一周时间。前瞻性研究表明,3D打印可改善手术规划,尤其是在复杂的血管内手术中,还能制作高效的血管内训练模拟器,提高住院医师的手术操作水平和自信心。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f808/6604582/79b30184c1cd/iss-3-20180020-g001.jpg

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