首页> 外文期刊>Microscopy and microanalysis: The official journal of Microscopy Society of America, Microbeam Analysis Society, Microscopical Society of Canada >Evaluating the Use of Synthetic Replicas for SEM Identification of Bloodstains (with Emphasis on Archaeological and Ethnographic Artifacts)
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Evaluating the Use of Synthetic Replicas for SEM Identification of Bloodstains (with Emphasis on Archaeological and Ethnographic Artifacts)

机译:评估合成复制品在SEM识别血迹中的使用(重点是考古和人种学手工艺品)

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摘要

Some archaeological or ethnographic specimens are unavailable for direct examination using a scanning electron microscope (SEM) due to methodological obstacles or legal issues. In order to assess the feasibility of using SEM synthetic replicas for the identification of bloodstains (BSs) via morphology of red blood cells (RBCs), three fragments of different natural raw material (inorganic, stone; plant, wood; animal, shell) were smeared with peripheral human blood. Afterwards, molds and casts of the bloodstained areas were made using vinyl polysiloxane (VPS) silicone impression and polyurethane (PU) resin casting material, respectively. Then, the original samples and the resulting casts were coated with gold and examined in secondary-electron mode using a high-vacuum SEM. Results suggest that PU resin casts obtained from VPS silicone molds can preserve RBC morphology in BSs, and consequently that synthetic replicas are feasible for SEM identification of BSs on cultural heritage specimens made of natural raw materials. Although the focus of this study was on BSs, the method reported in this paper may be applicable to organic residues other than blood, as well as to the surface of other specimens when, for any reason, the original is unavailable for an SEM.
机译:由于方法上的障碍或法律问题,某些考古或人种标本无法直接使用扫描电子显微镜(SEM)进行检查。为了评估使用SEM合成复制品通过红细胞(RBC)形态鉴定血迹(BS)的可行性,对三种天然原料(无机,石材,植物,木材,动物,贝壳)的三个片段进行了分析。涂有人体外周血。然后,分别使用乙烯基聚硅氧烷(VPS)硅树脂印模和聚氨酯(PU)树脂浇铸材料制作沾满血迹的区域的模具和铸件。然后,将原始样品和所得铸件涂上金,并使用高真空SEM在二次电子模式下进行检查。结果表明,从VPS硅树脂模具中获得的PU树脂铸件可以保留BS中的RBC形态,因此,合成的复制品对于用SEM鉴定天然原料制成的文化遗产标本上的BS是可行的。尽管本研究的重点是BS,但由于某种原因而无法使用SEM时,本文报道的方法可能适用于血液以外的有机残留物以及其他标本的表面。

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