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Optical coherence tomography for fingerprint acquisition from internal layer - A case study

机译:光学相干断层扫描技术从内层获取指纹-案例研究

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In this paper a problem of fingerprint-based biometric technique for the use in cases when the fingertips surface has been seriously damaged, making it impossible or extremely difficult to form a conventional reference pattern, is addressed. The optical coherence tomography (OCT) is considered as a method to acquire data enabling later reconstruction of the fingerprint pattern from the internal (mother) layer. A set of two procedures: the first converting the 3-dimensional data resulting from the OCT to the 2-dimensional raw fingerprint image and the second adapting this image to input data for simple, standard fingerprint recognition algorithms, are described. Both procedures make up a complete preprocessing tool. The data set consisted of 149 B-scans forming a 3-dimensional structure describing the surface and shallow internal layer of a part of a fingertip of a person with considerably damaged fingertip surface, making the recognition of the fingerprint with direct method impossible. The obtained results prove that the OCT technique can be efficiently used to solve the considered problem, and that the proposed algorithms form a tool that can be useful for larger databases.
机译:在本文中,解决了基于指纹的生物识别技术的问题,该技术用于指尖表面受到严重损坏的情况,使得不可能或极其困难地形成传统的参考图案。光学相干断层扫描(OCT)被认为是一种获取数据的方法,该数据使得以后可以从内部(母体)层重建指纹图案。描述了两个过程的集合:第一个过程将来自OCT的3维数据转换为2维原始指纹图像,第二个过程使该图像适应输入数据,以实现简单的标准指纹识别算法。这两个过程构成了一个完整的预处理工具。该数据集由149个B扫描组成,这些B扫描形成3维结构,描述了指尖表面严重受损的人的指尖部分的表面和较浅的内层,这使得直接方法无法识别指纹。获得的结果证明,OCT技术可以有效地解决所考虑的问题,并且所提出的算法构成了一种可用于大型数据库的工具。

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