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一种聚集诱导发光体与氰基丙烯酸酯熏显法相结合的潜伏指纹分析方法。

An aggregation-induced emission luminogen combined with a cyanoacrylate fuming method for latent fingerprint analysis.

机构信息

Department of Criminal Science and Technology & Jiangsu Engineering Laboratory of Food, Drug, and Environment Criminal Investigation and Forensic Analysis, Jiangsu Police Institute, Nanjing, Jiangsu 210031, P. R. China.

Center of Forensic Science and Technology, Bureau of Public Security for Jiangsu Province, Nanjing, Jiangsu 210024, P. R. China.

出版信息

Analyst. 2020 Mar 16;145(6):2311-2318. doi: 10.1039/c9an02158b.

Abstract

Fingerprints remain topologically unchanged in one's whole life, and therefore, have been used as a means to biometrically identify individuals in forensic investigations, law enforcement and access control. Appropriate methods are essential to obtain high-quality fingerprint images. In this contribution, an aggregation-induced emission luminogen tetraphenylethene-based dye FLA-2 was synthesized and characterized for the visualization of latent fingerprints (LFPs). LFPs can be directly visualized by incubating with the dye FLA-2 solution. And, after a cyanoacrylate fuming method pre-treatment stage, fine fingerprint structures can be obtained from level-1 to level-3 details. Two methods were compared using resolution, fluorescence intensity, and scanning electron microscopy imaging to investigate the influence of the cyanoacrylate fuming method pre-treatment stage. Furthermore, the visualization of old LFPs (7 d, 16 d and 30 d) on glass slides, aluminum foil and coin substrates also became effective after the pre-treatment step. The fluorescent LFP images mentioned above were all validated by using an automated fingerprint identification system obtaining positive matches. These results demonstrate the potential of this method to be applied to visualizing LFPs in the field of public security.

摘要

指纹在人的一生当中始终保持拓扑不变,因此被广泛应用于法医鉴定、执法和门禁控制等领域的生物识别。为了获取高质量的指纹图像,适当的方法至关重要。在本研究中,我们合成了一种聚集诱导发光生色团四苯乙烯基染料 FLA-2,并将其用于可视化潜伏指纹(LFPs)。LFPs 可以通过与染料 FLA-2 溶液孵育直接可视化。并且,在经过氰基丙烯酸烟雾预处理阶段后,可以从 1 级到 3 级细节获得精细的指纹结构。我们使用分辨率、荧光强度和扫描电子显微镜成像比较了两种方法,以研究氰基丙烯酸烟雾预处理阶段的影响。此外,经过预处理步骤后,玻璃载玻片、铝箔和硬币基底上的旧 LFPs(7 天、16 天和 30 天)也可以有效地可视化。上述荧光 LFPs 图像均通过使用自动指纹识别系统获得阳性匹配进行了验证。这些结果表明,该方法在公共安全领域可视化 LFPs 方面具有应用潜力。

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