首页> 外文会议>Conference on dynamics and fluctuations in biomedical photonics IX >In vivo microcirculation imaging of the sub surface fingertip using correlation mapping optical coherence tomography (cmOCT)
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In vivo microcirculation imaging of the sub surface fingertip using correlation mapping optical coherence tomography (cmOCT)

机译:使用相关映射光学相干断层扫描(cmOCT)对表面下指尖进行体内微循环成像

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We describe a novel application of correlation mapping optical coherence tomography (cmOCT) for sub-surface fingerprint biometric identification. Fingerprint biometrics including automated fingerprint identification systems, are commonly used to recognise the fingerprint, since they constitute simple, effective and valuable physical evidence. Spoofing of biometric fingerprint devices can be easily done because of the limited information obtained from the surface topography. In order to overcome this limitation a potentially more secure source of information is required for biometric identification applications. In this study, we retrieve the microcirculation map of the subsurface fingertip by use of the cmOCT technique. To increase probing depth of the sub surface microcirculation, an optical clearing agent composed of 75% glycerol in aqueous solution was applied topically and kept in contact for 15 min. OCT intensity images were acquired from commercial research grade swept source OCT system (model OCT1300SS, Thorlabs Inc. USA). A 3D OCT scan of the fingertip was acquired over an area of 5×5 mm using 1024×1024 A-scans in approximately 70 s. The resulting volume was then processed using the cmOCT technique with a 7×7 kernel to provide a microcirculation map. We believe these results will demonstrate an enhanced security level over artificial fingertips. To the best of our knowledge, this is the first demonstration of imaging microcirculation map of the subsurface fingertip.
机译:我们描述了相关映射光学相干断层扫描(cmOCT)的一种新应用,用于表面下指纹生物特征识别。包括自动指纹识别系统在内的指纹生物识别技术通常用于识别指纹,因为它们构成了简单,有效和有价值的物理证据。由于从表面形貌获得的信息有限,因此可以轻松完成生物特征指纹设备的欺骗。为了克服该限制,对于生物识别应用而言,可能需要更安全的信息源。在这项研究中,我们使用cmOCT技术检索了指尖下的微循环图。为了增加亚表面微循环的探测深度,局部涂布由75%甘油水溶液组成的光学清除剂,并保持接触15分钟。从商业研究级扫描源OCT系统(型号OCT1300SS,Thorlabs Inc. USA)获取OCT强度图像。在大约70 s内,使用1024×1024 A扫描在5×5 mm的区域上获取了指尖的3D OCT扫描。然后使用cmOCT技术对7×7内核进行处理,以提供微循环图。我们相信,这些结果将证明在人工指尖上的安全级别得到了提高。据我们所知,这是地下指尖成像微循环图的首次演示。

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