Functional Morphology and Biomechanics, Institute of Zoology, Kiel University, Kiel, Germany.
Sci Rep. 2020 Jul 22;10(1):12172. doi: 10.1038/s41598-020-69075-y.
Presenting your research in the proper light can be exceptionally challenging. Meanwhile, dome illumination systems became a standard for micro- and macrophotography in taxonomy, morphology, systematics and especially important in natural history collections. However, proper illumination systems are either expensive and/or laborious to use. Nowadays, 3D-printing technology revolutionizes lab-life and will soon find its way into most people's everyday life. Consequently, fused deposition modelling printers become more and more available, with online services offering personalized printing options. Here, we present a 3D-printed, scalable, low-cost and modular LED illumination dome system for scientific micro- and macrophotography. We provide stereolithography ('.stl') files and print settings, as well as a complete list of necessary components required for the construction of three differently sized domes. Additionally, we included an optional iris diaphragm and a sliding table, to arrange the object of desire inside the dome. The dome can be easily scaled and modified by adding customized parts, allowing you to always present your research object in the best light.
将你的研究成果以恰当的方式呈现出来可能极具挑战性。同时,穹顶照明系统已成为分类学、形态学、系统学中微观和宏观摄影的标准,在自然历史收藏中尤为重要。然而,合适的照明系统要么昂贵,要么使用起来很麻烦。如今,3D 打印技术正在彻底改变实验室生活,并且很快将在大多数人的日常生活中找到一席之地。因此,熔融沉积建模打印机越来越普及,在线服务提供个性化打印选项。在这里,我们展示了一种用于科学微观和宏观摄影的 3D 打印、可扩展、低成本和模块化的 LED 照明穹顶系统。我们提供立体光刻(“.stl”)文件和打印设置,以及构建三个不同尺寸穹顶所需的完整组件列表。此外,我们还包括一个可选的虹膜和一个滑动台,以便在穹顶内安排所需的物体。通过添加定制部件,穹顶可以轻松缩放和修改,从而使你能够始终以最佳的方式展示你的研究对象。