Zhang Ning, Wang Chengming, Sun Zhenwen, Li Zhigang, Xie Lanchi, Yan Yuwen, Xu Lei, Guo Jingjing, Huang Wei, Li Zhihui, Xue Jing, Liu Huan, Xu Xiaojing
National Engineering Laboratory for Forensic Science, Institute of Forensic Science, Ministry of Public Security, Beijing 100038, China.
State Key Laboratory of Low-dimensional Quantum Physics, Department of Physics, Tsinghua University and Collaborative Innovation Center of Quantum Matter, Beijing 100084, China.
Forensic Sci Int. 2018 Jun;287:81-87. doi: 10.1016/j.forsciint.2018.03.030. Epub 2018 Mar 23.
Adhesive tape is one type of common item which can be encountered in criminal cases involving rape, murder, kidnapping and explosives. It is often the case that a suspect deposits latent fingerprints on the sticky side of adhesive tape material when tying up victims, manufacturing improvised explosive devices or packaging illegal goods. However, the adhesive tapes found at crime scenes are usually stuck together or attached to a certain substrate, and thus the latent fingerprints may be hidden beneath the tapes. Current methods to detect latent fingerprint hidden beneath adhesive tape need to peel it off first and then apply physical or chemical methods to develop the fingerprint, which undergo complicated procedures and would affect the original condition of latent print. Optical coherence tomography (OCT) is a novel applied techniques in forensics which enables obtaining cross-sectional structure with the advantages of non-invasive, in-situ, high resolution and high speed. In this paper, a custom-built spectral-domain OCT (SD-OCT) system with a hand-held probe was employed to detect fingerprints hidden beneath different types of adhesive tapes. Three-dimensional (3D) OCT reconstructions were performed and the en face images were presented to reveal the hidden fingerprints. The results demonstrate that OCT is a promising tool for rapidly detecting and recovering high quality image of latent fingerprint hidden beneath adhesive tape without any changes to the original state and preserve the integrity of the evidence.
胶带是涉及强奸、谋杀、绑架和爆炸物等刑事案件中常见的物品之一。通常情况下,嫌疑人在捆绑受害者、制造简易爆炸装置或包装非法物品时,会在胶带材料的粘性面上留下潜在指纹。然而,在犯罪现场发现的胶带通常是粘在一起的,或者附着在某种基材上,因此潜在指纹可能会隐藏在胶带下面。目前检测隐藏在胶带下面的潜在指纹的方法需要先将胶带剥离,然后应用物理或化学方法来显影指纹,这些方法程序复杂,会影响潜在指纹的原始状态。光学相干断层扫描(OCT)是法医学中一种新兴的应用技术,它能够获得横截面结构,具有非侵入性、原位、高分辨率和高速的优点。在本文中,采用了一种定制的带有手持探头的光谱域OCT(SD-OCT)系统来检测隐藏在不同类型胶带下面的指纹。进行了三维(3D)OCT重建,并呈现了正面图像以揭示隐藏的指纹。结果表明,OCT是一种很有前途的工具,可用于快速检测和恢复隐藏在胶带下面的潜在指纹的高质量图像,而不会对原始状态造成任何改变,并保持证据的完整性。