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APPLICATION OF NUCLEAR AND ALLIED TECHNIQUES FOR THE CHARACTERIZATION OF FORENSIC SAMPLES

机译:核及相关技术在法医样品鉴定中的应用

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Forensic science deals with the application of various techniques - physical, chemical, and biological - for crime investigation. The legal implications of such analyses put considerable restrictions on the choice of techniques. Moreover, the unknown nature of materials, the limited availability of samples, and the large number of elements to be analysed put considerable strain on the analyst to select appropriate methods. The availability of nuclear techniques has considerably enhanced the scope of forensic analysis. Multi-technique approaches, involving nuclear and non-nuclear analytical methods, have proven to be valid and versatile. In this paper we present recent results from the use of nuclear and allied analytical methods for forensic applications. Some of the forensic samples recently analysed in our laboratories will also be discussed. One of the major types of samples handled pertains to the identification of gunshot residues, and nuclear techniques have considerably simplified interpretation of results. Analysis of unknown materials like powders or metallic fragments for the possible presence of illicit nuclear material is becoming more essential. Characterization of materials is also of importance in view of the possible dumping of toxic wastes from developed countries in developing countries. Detection of gold in a smuggling case was possible using X ray fluorescence and neutron activation analysis even though the smuggler used an innovative approach and converted the gold to a colourless cyanide complex to prevent its easy detection. Analysis of commercial pharmaceutical or medicinal preparations for toxic metals is also becoming important in view of the illegal use of materials like heroin. The increasing volume of illegal and criminal activities requires judicious application of nuclear and non-nuclear techniques for the conviction of criminals and, more importantly, for acquittal of the innocent.
机译:法医科学涉及各种技术(物理,化学和生物技术)在犯罪调查中的应用。这种分析的法律含义对技术的选择施加了很大的限制。而且,材料的性质未知,样品的供应有限以及要分析的元素数量众多,使分析人员难以选择合适的方法。核技术的可用性大大扩大了法医分析的范围。涉及核和非核分析方法的多技术方法已被证明是有效且通用的。在本文中,我们介绍了使用核和相关分析方法进行司法鉴定的最新结果。我们还将讨论我们实验室中最近分析的一些法医样品。所处理样品的主要类型之一是枪击残留物的鉴定,而核技术已大大简化了结果的解释。对诸如粉末或金属碎片之类的未知材料进行分析,以判断是否存在非法核材料。考虑到可能从发达国家向发展中国家倾倒有毒废物,材料的表征也很重要。即使走私分子采用了创新的方法并将金转化为无色氰化物络合物以防止其轻易被发现,也可以使用X射线荧光和中子活化分析来检测走私案件中的金。鉴于非法使用海洛因之类的物质,对有毒金属的商业药物或药用制剂进行分析也变得越来越重要。非法和犯罪活动的数量不断增加,需要明智地运用核技术和非核技术对罪犯定罪,更重要的是,使无辜者无罪释放。

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