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A 3D Iris Scanner From Multiple 2D Visible Light Images

机译:来自多个2D可见光图像的3D虹膜扫描仪

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摘要

The development of new methods for biometrics using the 3-D surface of the iris could be useful in various applications, such as reliable identity verification of people, when only segments of the iris are available, the study of how the iris code changes with pupil dilation, and studying acute angle glaucoma and its relation to the 3-D iris structure. The goal of this paper was to build a 3-D model of the iris surface from several 2-D iris images, adding depth information to the iris model. We developed a 3-D iris scanner, which reconstructs a 3-D mesh model of the iris surface from several 2-D visible light images. First, a smartphone camera captures visible light iris images from different angles in a controlled illumination environment. Then, a structure-from-motion algorithm reconstructs a point-cloud 3-D model. Finally, the best-fitting 3-D mesh model is obtained using the screened Poisson surface reconstruction technique. Our results include the reconstruction of the 3-D iris models of ten subjects. These models contain an average of 11,000 3-D points. The spatial resolution of our device was measured as 11 μm by scanning a 3-D pattern of known dimensions. The 3-D model of the iris is compared with the results from an optical coherence tomography (OCT) performed on one iris. Our results show that our new 3-D iris scanning method produces a model with potential applications in biometrics and ophthalmology.
机译:使用虹膜的3-D表面开发用于生物识别性的新方法可能在各种应用中有用,例如人们的可靠身份验证,只有虹膜的片段可用,研究虹膜代码如何与学生改变扩张,并研究急性角度青光眼及其与三维光圈结构的关系。本文的目标是从多个二级虹膜图像构建一个三维虹膜表面,将深度信息添加到IRIS模型。我们开发了一个三维IRIS扫描仪,该扫描仪从几个2-D可见光图像重建了虹膜表面的三维网状模型。首先,智能手机相机在受控照明环境中从不同角度捕获可见光虹膜图像。然后,结构从运动算法重建点云3-D模型。最后,使用屏蔽的泊松表面重建技术获得了最佳的3-D网格模型。我们的结果包括重建十个受试者的3-D虹膜模型。这些型号平均含有11,000个3-D点。通过扫描3D已知尺寸的三维模式,通过扫描3-D模式测量我们的装置的空间分辨率。将虹膜的3-D模型与在一个虹膜上进行的光学相干断层扫描(OCT)的结果进行比较。我们的研究结果表明,我们的新的3-D虹膜扫描方法产生了一种模型,具有生物识别和眼科的潜在应用。

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