Bradshaw R, Wilson G, Denison N, Francese S
Centre for Mass Spectrometry Imaging, Biomolecular Sciences Research Centre, Sheffield, UK.
Accreditation & Standards, Yorkshire & Humber Regional Scientific Support Services, UK.
Forensic Sci Int. 2021 Feb;319:110643. doi: 10.1016/j.forsciint.2020.110643. Epub 2020 Dec 4.
Latent fingermarks are routinely visualised by subjecting them to one or more CSI/crime lab processes to maximise the recovery of ridge flow and minutiae permitting an identification. In the last decade mass spectrometric imaging (MSI) techniques have been applied to fingermarks to provide information about a suspect and/or on the circumstances of the crime as well as yielding additional images of the ridge pattern. In some cases, these techniques have shown the ability to provide further ridge detail, "filling in the gaps" of the developed mark. Matrix Assisted Laser Desorption Ionisation Mass Spectrometry Imaging (MALDI MSI) is presently the most advanced of the so-called 'surface analysis' techniques, in terms of compatibility with a number of fingermark enhancement processes and implementation in operational casework. However, for the use of this technique in major crimes to become widespread, compatibility with sequential processing must be demonstrated. This short study has assessed compatibility with a number fingermark processing sequences applied to natural marks on the adhesive side of brown (parcel) and clear tapes. Within the study undertaken, the results confirm the possibility to use MALDI MSI in sequence with multiple processes offering in some instances, complementary ridge detail with respect to that recovered from marks developed by conventional sequence processing.
潜在指纹通常通过使其接受一个或多个犯罪现场调查/犯罪实验室流程来进行可视化处理,以最大限度地恢复纹路流向和细节特征,从而实现指纹识别。在过去十年中,质谱成像(MSI)技术已应用于指纹,以提供有关嫌疑人的信息和/或犯罪情况,同时还能生成纹路图案的额外图像。在某些情况下,这些技术已显示出能够提供进一步的纹路细节,“填补”显影指纹的“空白”。就与多种指纹增强流程的兼容性以及在实际案件工作中的应用而言,基质辅助激光解吸电离质谱成像(MALDI MSI)目前是所谓“表面分析”技术中最先进的。然而,要使该技术在重大犯罪中的应用广泛普及,必须证明其与连续处理的兼容性。这项简短的研究评估了与应用于棕色(包裹)胶带和透明胶带粘性面天然指纹的多种指纹处理序列的兼容性。在所进行的研究中,结果证实了按顺序使用MALDI MSI与多个流程的可能性,在某些情况下,与从传统序列处理显影的指纹中恢复的纹路细节相比,能提供互补的纹路细节。