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用于眼科手术的微型功能性套管针的增材制造。

Additive Manufacturing of a Miniature Functional Trocar for Eye Surgery.

作者信息

Lussenburg Kirsten, Scali Marta, Sakes Aimée, Breedveld Paul

机构信息

Bio-Inspired Technology Group (BITE), Department of BioMechanical Engineering, Faculty of Mechanical, Maritime, and Materials Engineering, Delft University of Technology, Delft, Netherlands.

Dutch Ophthalmic Research Center International (DORC), Zuidland, Netherlands.

出版信息

Front Med Technol. 2022 Feb 17;4:842958. doi: 10.3389/fmedt.2022.842958. eCollection 2022.

Abstract

Stereolithography is emerging as a promising additive manufacturing technology for a range of applications in the medical domain. However, for miniature, medical devices such as those used in ophthalmic surgery, a number of production challenges arise due to the small size of the components. In this work, we investigate the challenges of creating sub-millimeter features for a miniature, functional trocar using Stereolithography. The trocar cannula system is used in eye surgery to facilitate a passage for other instruments. A standard trocar consists of a hollow cannula and a flexible check valve. The research was performed in two stages: in the first stage we investigated the effect of different materials and print settings on the current design of the cannula and the valve separately, and in the second stage we used these findings to optimize the design and production process. After the first investigation, it became apparent that even though the dimensions of the trocar are within the feature size range of Stereolithography, all hollow features tended to fuse shut during printing. This effect appeared regardless of the materials or print settings, and can be attributed to refraction of the laser source. In order to circumvent this, we identified two potential strategies: (1) increasing the negative space surrounding features; and (2) decreasing the surface area per layer. By applying these strategies, we tested a new design for the cannula and valve and managed to 3D print a functional trocar, which was tested in an artificial eye. The design of the 3D printed trocar allows for further personalization depending on the specific requirements of both patient and surgeon. The proposed strategies can be applied to different applications to create miniature features using Stereolithography.

摘要

立体光刻技术正成为一种在医学领域具有一系列应用前景的增材制造技术。然而,对于诸如眼科手术中使用的微型医疗设备,由于部件尺寸小,会出现一些生产挑战。在这项工作中,我们研究了使用立体光刻技术为微型功能性套管针创建亚毫米级特征的挑战。套管针系统用于眼科手术,为其他器械提供通道。标准套管针由空心套管和柔性止回阀组成。该研究分两个阶段进行:在第一阶段,我们分别研究了不同材料和打印设置对套管和阀门当前设计的影响;在第二阶段,我们利用这些发现优化设计和生产过程。经过首次研究,很明显,尽管套管针的尺寸在立体光刻技术的特征尺寸范围内,但所有空心特征在打印过程中都倾向于熔合关闭。无论材料或打印设置如何,这种效果都会出现,这可归因于激光源的折射。为了规避这一问题,我们确定了两种潜在策略:(1)增加特征周围的负空间;(2)减少每层的表面积。通过应用这些策略,我们测试了套管和阀门的新设计,并成功3D打印出了一个功能性套管针,并在人造眼中进行了测试。3D打印套管针的设计允许根据患者和外科医生的具体要求进行进一步个性化定制。所提出的策略可应用于不同的应用,以使用立体光刻技术创建微型特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f715/8891482/8f1ac879b434/fmedt-04-842958-g0001.jpg

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