Department of Forensic Engineering, National Forensic Service, Wonju 26460, Republic of Korea; Department of Mechanical Engineering, Korea University, Seoul 02841, Republic of Korea.
Department of Forensic Engineering, National Forensic Service, Wonju 26460, Republic of Korea.
Forensic Sci Int. 2020 Nov;316:110461. doi: 10.1016/j.forsciint.2020.110461. Epub 2020 Aug 19.
Bloodstain pattern analysis, one of the areas of forensic science, is performed to analyze the physical characteristics of bloodstains, including their size, shape, and distribution, to reconstruct a crime scene. A bloodstain pattern analyst should obtain through experiments and education the capabilities to both understand the generation mechanisms of bloodstains and identify the characteristics of the bloodstains. Experiments and education about bloodstain pattern analysis are carried out by using human blood taken from subjects, animal blood (porcine or bovine) supplied from butcheries, and blood substitute products developed in other countries. However, these kinds of blood have many limitations in their application due to various problems. The blood substitute developed in the present study is more similar to human blood than other blood substitute products developed in other countries with regard to the physical properties, including viscosity, viscoelasticity, and surface tension, as well as the drip bloodstain patterns depending on the surface and coordinate characteristics of drip stains impact angle. The blood substitute developed in the present study is more practical, because the materials that are used in its preparation are readily available in the market and do not include chemicals that are harmful to the human body, and the blood substitute has luminol reaction functionality and pattern transfer bloodstain (bloodstain fingerprint, bloodstain footprint, etc.) dyeing functionality.
血迹形态分析是法医学的一个领域,用于分析血迹的物理特征,包括大小、形状和分布,以重建犯罪现场。血迹形态分析师应该通过实验和教育获得理解血迹生成机制和识别血迹特征的能力。血迹形态分析的实验和教育是用人血、从屠宰场供应的动物血(猪或牛)以及其他国家开发的血液替代品进行的。然而,由于各种问题,这些血液在应用中有许多局限性。与其他国家开发的血液替代品相比,本研究开发的血液替代品在物理性质(包括粘度、粘弹性和表面张力)以及取决于滴落血迹表面和坐标特征的滴落血迹模式方面,更类似于人体血液。本研究开发的血液替代品更实用,因为其制备中使用的材料在市场上很容易获得,不包括对人体有害的化学物质,而且血液替代品具有发光氨反应功能和模式转移血迹(血迹指纹、血迹足迹等)染色功能。