Division of Experimental Physics, Ruđer Bošković Institute, Bijenička 54, 10000 Zagreb, Croatia.
Forensic Science Centre "Ivan Vučetić", Ilica 335, 10000 Zagreb, Croatia.
Forensic Sci Int. 2022 Feb;331:111136. doi: 10.1016/j.forsciint.2021.111136. Epub 2021 Dec 3.
In the forensic investigation of questioned documents, it is often very important to know the deposition order of ink traces from two different writing tools at their intersection on a paper. In the present work, intersections of inks from several writing tools were studied using optical techniques that are standardly applied for questioned documents examination in a forensic laboratory, and an accelerator-based Ion Beam Analysis (IBA) technique called Secondary Ion Mass Spectrometry using MeV ions (MeV SIMS) that is applied in an accelerator facility. MeV SIMS provides molecular information about the studied inks from writing tools, which is an added value and can be also applied for determination of deposition order but was so far relatively rarely used in forensic studies. Aim of this paper is to compare performance of optical techniques and MeV SIMS for several combinations of intersecting lines. Cases were divided into those in which optical techniques can distinguish used inks and those which are optically completely indistinguishable. In the latter cases, we show that although mass spectra of used inks (from blue ballpoint pens) had extremely small differences, these in combination with advanced and most importantly objective multivariate algorithms could be very beneficial in resolving the deposition order at the intersection of optically indistinguishable inks. In general, MeV SIMS proved to be more efficient for oil-based inks while difficulties were encountered with water-based ones, similar to optical methods.
在文件鉴定的法医学调查中,通常非常重要的是要知道在纸张上两个不同书写工具的墨迹交叉处的墨迹沉积顺序。在本工作中,使用标准应用于法医实验室文件鉴定的光学技术以及在加速器设施中应用的基于加速器的离子束分析(IBA)技术,即兆电子伏离子二次离子质谱(MeV SIMS)研究了来自几种书写工具的墨迹的交叉点。MeV SIMS 提供了来自书写工具的研究墨水的分子信息,这是一个附加值,也可用于确定沉积顺序,但迄今为止在法医研究中相对较少使用。本文的目的是比较光学技术和 MeV SIMS 对几种交叉线组合的性能。案例分为光学技术可以区分使用的墨水和光学上完全无法区分的墨水。在后一种情况下,我们表明,尽管使用的墨水(蓝色圆珠笔)的质谱有极小的差异,但将这些结合使用先进的、最重要的是客观的多元算法,对于解析光学上无法区分的墨水的交叉处的沉积顺序非常有益。一般来说,MeV SIMS 被证明对基于油的墨水更有效,而与光学方法一样,水基墨水则存在困难。