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3D Shape Reconstruction of 3D Printed Transparent Microscopic Objects from Multiple Photographic Images Using Ultraviolet Illumination

机译:使用紫外线照明从多个摄影图像中进行3D打印的透明微观对象的3D形状重建

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摘要

We propose and demonstrate a simple, low-cost, three-dimensional (3D) shape acquisition method for transparent 3D printed microscopic objects. Our method uses ultraviolet (UV) illumination to obtain high-contrast silhouette images of transparent 3D printed polymer objects. Multiple silhouette images taken from different viewpoints make it possible to reconstruct the 3D shape of this transparent object. A 3D shape acquisition system consisting of a UV light-emitting diode, charge-coupled device camera and a rotation stage was constructed and used to successfully reconstruct the 3D shape of a transparent bunny model produced using micro-stereolithography. In addition, 3D printed pillar array models, with different diameters on the order of several hundred micrometers, were reconstructed. This method will be a promising tool for the 3D shape reconstruction of transparent 3D objects on both the micro- and macro-scale by changing the imaging lens.
机译:我们提出并演示了一种用于透明3D打印微观对象的简单,低成本,三维(3D)形状获取方法。我们的方法使用紫外线(UV)照明来获得透明的3D打印聚合物对象的高对比度轮廓图像。从不同角度拍摄的多个轮廓图像可以重建此透明对象的3D形状。构造了一个3D形状采集系统,该系统由UV发光二极管,电荷耦合器件照相机和旋转台组成,并用于成功地重建使用微立体光刻技术制作的透明兔子模型的3D形状。另外,重建了具有几百微米量级的不同直径的3D打印柱阵列模型。通过更换成像镜头,此方法将成为在微观和宏观尺度上对透明3D对象进行3D形状重建的有前途的工具。

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