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An engineering approach to forensic methods: The citrate method for postmortem interval determination.

机译:取证方法的一种工程方法:确定死后时间间隔的柠檬酸盐方法。

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摘要

The Postmortem Interval (PMI) is the amount of time between the death of an individual and the discovery of the remains. Existing forensic techniques for the determination of the PMI are limited once soft tissue fully decays. A novel technique has recently been developed using the molecule Citrate (C 6H8O7) to calculate the Postmortem Interval (PMI). Currently, this method cannot be practically applied due to the limited understanding of different forensic environments on the biochemistry of postmortem bone. In addition, further understanding of bone citrate measurement methods is needed to determine a practical field measurement approach. This study aims to (1) identify alternative measurement methods for bone citrate and (2) design a bioreactor system that can discretize the myriad of environmental variables that impact decomposition.;Using a colorimetric assay and high-performance liquid chromatography (HPLC), this study measured bone citrate concentrations at 1.26 and 1.39 wt. % (colorimetric assay measurement) and 1.69 wt. % (HPLC measurement). Compared to the value established by Schwarcz et al. (2013) of 2.0 wt. %, results show 63 %, 69 %, (colorimetric assay measurement) and 85 % (HPLC measurement) extraction and recovery of citrate. However, high standard deviations and intra-sample variance suggest a need for further analysis of the sample preparation methods, as well as assessment of potential techniques for the quantification of citrate concentration.;Forensic bioreactors were designed based on forensically-relevant environmental variables discretized using the following soil science metrics: soil temperature regime, soil moisture regime, slope, texture, soil horizon, cation exchange capacity, soil pH, and organic matter content. A total of fourteen different environmental conditions were created and controlled successfully over a 60 day experiment. Results demonstrate successful development, implementation and control of forensic bioreactors. A pilot study demonstrates the need for further refinement of chemical methods; however, porcine rib bone samples were successfully aged in bioreactors over 60 days.;This research demonstrates the need for further development of the citrate chemical analysis to ensure accurate field testing. Once a field method for citrate measurement has been established, bioreactor systems can be created to replicate many different of clandestine burial contexts, which will allow for the more rapid understanding of environmental effects on skeletal remains. Ultimately, through the use of forensic bioreactors, global research can be piloted in the local laboratory.
机译:死后间隔时间(PMI)是指从个人死亡到发现遗体之间的时间量。一旦软组织完全腐烂,用于确定PMI的现有法医技术将受到限制。最近已开发出一种新技术,使用分子柠檬酸盐(C 6H8O7)计算死后时间间隔(PMI)。目前,由于对法医环境对尸体骨骼生化的了解有限,因此该方法无法实际应用。另外,需要对柠檬酸骨测量方法的进一步了解来确定实际的现场测量方法。这项研究旨在(1)确定柠檬酸骨的替代测量方法,以及(2)设计一种生物反应器系统,该系统可以离散影响分解的无数环境变量;使用比色法和高效液相色谱(HPLC),研究测量了1.26和1.39 wt的柠檬酸骨浓度。 %(比色测定法测量)和1.69 wt。 %(HPLC测量)。与Schwarcz等人确定的值相比。 (2013)为2.0 wt。 %,结果显示63%,69%(比色测定法测定)和85%(HPLC测定)柠檬酸盐的提取和回收。但是,高标准偏差和样品内差异表明需要进一步分析样品制备方法以及评估柠檬酸盐浓度定量化的潜在技术。;法医生物反应器是根据法医相关环境变量设计的,该环境变量使用以下土壤科学指标:土壤温度状况,土壤水分状况,坡度,质地,土壤层位,阳离子交换能力,土壤pH值和有机质含量。在60天的实验中,成功创建并控制了总共14种不同的环境条件。结果证明了法医生物反应器的成功开发,实施和控制。一项初步研究表明,需要进一步完善化学方法。然而,猪肋骨样品已在生物反应器中成功老化60天。这项研究表明需要进一步开发柠檬酸盐化学分析以确保准确的现场测试。一旦建立了用于柠檬酸盐测量的现场方法,就可以创建生物反应器系统来复制许多不同的秘密埋葬环境,这将使人们更快地了解环境对骨骼遗骸的影响。最终,通过使用法医生物反应器,可以在当地实验室进行全球研究。

著录项

  • 作者

    Dunphy, Melissa Allyn.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Biomedical.;Anthropology Medical and Forensic.
  • 学位 M.S.
  • 年度 2014
  • 页码 89 p.
  • 总页数 89
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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