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Elemental analysis for profiling counterfeit watches

机译:分析伪造手表的元素分析

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Counterfeit watches are products of illicit activity and contain traces of their production and distribution. Traces provide pertinent information through one of their fundamental characteristics: the ability to reveal links between specimens or cases. The aim of this study was to develop an analytical strategy to obtain the elemental composition of watchcases, by analysing a selection of 35 counterfeit watches. We propose a methodology based on multivariate statistical analysis of chemical results that discriminates between watches from common and different origins, and, ultimately, classifies them into chemical groups. All watchcases were analysed using inductively coupled plasma mass spectrometry (ICP-MS), providing representative descriptive data on the composition of watchcases. Several multivariate approaches were assessed, considering different scenarios, each using a different set of variables. It appeared that the model that performed best in terms of classification criteria could be misleading, especially in an exploratory context that focuses on the production of intelligence. At the end of the day, hierarchical cluster analysis (HCA) allowed us to classify the specimens into 14 chemical classes. Information gained through chemical analysis revealed several links between the specimens. This initial study was performed on a very limited number of watches. Although still in the developmental stage, our approach exhibits promising capabilities and encourages chemical profiling of counterfeit watches on larger scale. (C) 2019 Elsevier B.V. All rights reserved.
机译:假冒手表是非法活动的产品,并包含其生产和分配的痕迹。迹线通过其基本特征之一提供相关信息:揭示标本或案件之间的链接的能力。本研究的目的是开发一种分析策略,以通过分析选择35个假冒手表来获得外壳的元素组成。我们提出了一种基于多变量统计分析的方法,从普通和不同起源之间的手表之间辨别,并最终将它们分为化学群体。使用电感耦合等离子体质谱(ICP-MS)来分析所有看板,提供关于看板的组成的代表性描述数据。考虑到不同场景,每次使用不同的变量,评估几种多变量方法。它似乎在分类标准方面表现最好的模型可能是误导性的,尤其是在专注于智力的生产的探索性环境中。在一天结束时,分层集群分析(HCA)允许我们将标本分类为14个化学类别。通过化学分析获得的信息揭示了标本之间的几个环节。这项初步研究是在非常有限数量的手表上进行的。虽然仍处于发展阶段,但我们的方法展示了有希望的能力,并鼓励伪造腕表的化学分析。 (c)2019年Elsevier B.V.保留所有权利。

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