Division of BioMedical Sciences, Faculty of Medicine, Memorial University of Newfoundland, St. John's, N, Canada.
Department of Otolaryngology, Faculty of Medicine, University of Ottawa, Ottawa, Ontario, Canada.
Mol Vis. 2021 Mar 31;27:117-124. eCollection 2021.
Use of animal models for human vision research is now pervasive. To address a range of technical challenges, laboratories either modify existing equipment or purchase products that are purpose designed. Three-dimensional (3D) printing technology now allows the do-it-yourself capability to invent, innovate, and manufacture for a specific purpose. Ophthalmic imaging is often used with a range of other sophisticated experimental retinal imaging techniques, such as spectral domain optical coherence tomography (SD-OCT). The handheld smartphone camera and cost-effective, readily available professional-quality apps now allow accessible high-definition video ophthalmic image recording. However, to our knowledge, there are few reports of adapting smartphone ophthalmic imaging to existing experimental SD-OCT imaging instrumentation. This would offer better accuracy, reproducibility, and most importantly, precision. The objective of the present study was to use 3D printing to enhance the functionality and precision of existing SD-OCT instrumentation and smartphone-based ophthalmic imaging through construction of a custom 3D-printed assembly. The assembly can be controlled either manually or by the highly precise rodent stage of the SD-OCT instrument. Using this technical approach, 3D printing facilitated a novel methodology for high-quality ophthalmic imaging with low cost and ease of production either manually or by enhancing existing SD-OCT instrumentation.
现在,动物模型在人类视觉研究中被广泛应用。为了应对一系列技术挑战,实验室要么修改现有的设备,要么购买专门设计的产品。三维(3D)打印技术现在允许人们自行发明、创新和制造特定用途的产品。眼科成像通常与一系列其他复杂的实验性视网膜成像技术一起使用,如谱域光学相干断层扫描(SD-OCT)。现在,手持智能手机摄像头和经济实惠、随时可用的专业质量应用程序允许进行可访问的高清视频眼科图像记录。然而,据我们所知,很少有将智能手机眼科成像应用于现有的实验性 SD-OCT 成像仪器的报道。这将提供更好的准确性、可重复性,最重要的是,精确性。本研究的目的是使用 3D 打印通过构建定制的 3D 打印组件来增强现有的 SD-OCT 仪器和基于智能手机的眼科成像的功能和精度。该组件可以手动控制,也可以通过 SD-OCT 仪器的高精度啮齿动物台控制。通过这种技术方法,3D 打印以低成本和易于生产的方式促进了一种具有高质量眼科成像的新方法,无论是手动还是增强现有的 SD-OCT 仪器。