Tahtouh Mark, Despland Pauline, Shimmon Ronald, Kalman John R, Reedy Brian J
Centre for Forensic Science, University of Technology, Sydney, PO Box 123, Broadway, NSW 2007, Australia.
J Forensic Sci. 2007 Sep;52(5):1089-96. doi: 10.1111/j.1556-4029.2007.00517.x. Epub 2007 Aug 3.
Fourier transform infrared (FTIR) chemical imaging allows the collection of fingerprint images from backgrounds that have traditionally posed problems for conventional fingerprint detection methods. In this work, the suitability of this technique for the imaging of fingerprints on a wider range of difficult surfaces (including polymer banknotes, various types of paper, and aluminum drink cans) has been tested. For each new surface, a systematic methodology was employed to optimize settings such as spectral resolution, number of scans, and pixel aggregation in order to reduce collection time and file-size without compromising spatial resolution and the quality of the final fingerprint image. The imaging of cyanoacrylate-fumed fingerprints on polymer banknotes has been improved, with shorter collection times for larger image areas. One-month-old fingerprints on polymer banknotes have been successfully fumed and imaged. It was also found that FTIR chemical imaging gives high quality images of cyanoacrylate-fumed fingerprints on aluminum drink cans, regardless of the printed background. Although visible and UV light sources do not yield fingerprint images of the same quality on difficult, nonporous backgrounds, in many cases they can be used to locate a fingerprint prior to higher quality imaging by the FTIR technique. Attempts to acquire FTIR images of fingerprints on paper-based porous surfaces that had been treated with established reagents such as ninhydrin were all unsuccessful due to the swamping effect of the cellulose constituents of the paper.
傅里叶变换红外(FTIR)化学成像能够从传统上给传统指纹检测方法带来问题的背景中收集指纹图像。在这项工作中,已经测试了该技术在更广泛的困难表面(包括聚合物钞票、各种类型的纸张和铝制饮料罐)上对指纹成像的适用性。对于每个新表面,采用了一种系统的方法来优化诸如光谱分辨率、扫描次数和像素聚集等设置,以便在不影响空间分辨率和最终指纹图像质量的情况下减少采集时间和文件大小。聚合物钞票上氰基丙烯酸酯熏显指纹的成像得到了改善,对于更大的图像区域采集时间更短。聚合物钞票上一个月前的指纹已成功熏显并成像。还发现,FTIR化学成像能够在铝制饮料罐上给出氰基丙烯酸酯熏显指纹的高质量图像,而不管有无印刷背景。尽管可见光和紫外光源在困难的无孔背景上无法产生相同质量的指纹图像,但在许多情况下,它们可用于在通过FTIR技术进行更高质量成像之前定位指纹。由于纸张纤维素成分的淹没效应,尝试获取用茚三酮等既定试剂处理过的纸质多孔表面上指纹的FTIR图像均未成功。