Darlow Luke Nicholas, Webb Leandra, Botha Natasha
Appl Opt. 2016 May 1;55(13):3387-96. doi: 10.1364/AO.55.003387.
Fingerprint recognition systems are prevalent in high-security applications. As a result, the act of spoofing these systems with artificial fingerprints is of increasing concern. This research presents an automatic means for spoof-detection using optical coherence tomography (OCT). This technology is able to capture a 3D representation of the internal structure of the skin and is thus not limited to a 2D surface scan. The additional information afforded by this representation means that accurate spoof-detection can be achieved. Two features were extracted to detect the presence of (1) an additional thin layer on the surface of the skin and (2) a thicker additional layer or a complete artificial finger. An analysis of these features showed that they are highly separable, resulting in 100% accuracy regarding spoof-detection, with no false rejections of real fingers. This is the first attempt at fully automated spoof-detection using OCT.
指纹识别系统在高安全应用中很普遍。因此,使用人造指纹欺骗这些系统的行为越来越受到关注。本研究提出了一种使用光学相干断层扫描(OCT)进行自动防伪检测的方法。这项技术能够捕捉皮肤内部结构的三维图像,因此不限于二维表面扫描。这种图像提供的额外信息意味着可以实现准确的防伪检测。提取了两个特征来检测(1)皮肤表面的额外薄层和(2)较厚的额外层或完整的人造手指的存在。对这些特征的分析表明它们具有高度可分离性,在防伪检测方面准确率达到100%,没有误拒真实手指的情况。这是首次尝试使用OCT进行全自动防伪检测。