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Applications of attenuated total reflectance fourier transform infrared spectroscopy for forensic analysis.

机译:衰减全反射傅里叶变换红外光谱在法医分析中的应用。

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摘要

Blood stains, which are among the traces encountered most frequently at crime scenes, are important for potential extraction and amplification of DNA for suspect identification, as well for spatter pattern analysis to reveal a sequence of events.;Attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR) was used in detection of blood stains and age estimation because of signature absorbances in the mid-infrared region at 3300 cm-1 (Amide A), 2800-3000 cm-1 (Amide B), ∼1650 cm-1 (Amide I), ∼1540 cm-1 (Amide II) ,and 1200-1350 cm-1 (Amide III).;Position and intensity shifts for amide peaks were observed due to aging changes occurring as a result of the denaturation of blood proteins and water absorption/desorption. Partial least square (PLS) regression was used in this work to combine these changes in a multivariate calibration for blood age estimation. Calibration experiments over several months at 30°C under a variety of humidity and substrates enable prediction of blood stain age under different environmental conditions.;Amide peak intensity changes in the spectrum can be related to blood concentration. Multivariate calibrations of IR spectra of blood dilutions on four types of fabric (acrylic, nylon, polyester, and cotton) were built using PLS. Gap derivatives (GDs) were applied as a preprocessing technique to optimize the performance of calibration models. Detection limits of 0.028 microg/cm2 for acrylic, 0.020 microg/cm2 for nylon, 0.017 microg/cm2 for polyester, and 0.0027 microg/cm2 for cotton were found.;As a popular technique for rapid infrared spectra collection, ATR-FTIR requires samples to be compressed against an internal reflection element. However, depending on the accessory design, the pressure applied to the sample is not always well controlled. While collecting data from fabrics with heterogeneous coatings, we have observed systematic pressure-dependent changes in spectra that can be eliminated by reproducible pressure control. We describe a pressure sensor adapted to work with an ATR pressure tower to enable more rigorous control of pressure during ATR sampling.
机译:血迹是犯罪现场最常见的痕迹之一,对于潜在的DNA提取和扩增以进行犯罪嫌疑人识别以及飞溅图案分析以揭示一系列事件都非常重要。;全反射傅里叶变换红外光谱( ATR-FTIR)被用于检测血迹和估计年龄,因为中红外区域的特征吸光度分别为3300 cm-1(酰胺A),2800-3000 cm-1(酰胺B),〜1650 cm-1 (酰胺I),〜1540 cm-1(酰胺II)和1200-1350 cm-1(酰胺III).;由于血液变性导致的老化变化导致酰胺峰的位置和强度发生了变化蛋白质和水吸收/解吸。在这项工作中,使用偏最小二乘(PLS)回归将这些变化结合在一起,用于血液年龄估计的多变量校准中。在30°C下在各种湿度和底物上进行的几个月的校准实验可以预测不同环境条件下的血迹年龄。;光谱中的酰胺峰强度变化可能与血液浓度有关。使用PLS建立了四种类型的织物(丙烯酸,尼龙,聚酯和棉)上血液稀释液红外光谱的多变量校准。间隙导数(GDs)被用作预处理技术以优化校准模型的性能。丙烯酸的检出限为0.028 microg / cm2,尼龙的检出限为0.020 microg / cm2,聚酯的检出限为0.017 microg / cm2,棉的检出限为0.0027 microg / cm2 .;作为快速收集红外光谱的常用技术,ATR-FTIR需要样品被压缩到内部反射元件上。但是,根据附件设计的不同,施加到样品上的压力并不能始终得到很好的控制。当从具有不均匀涂层的织物上收集数据时,我们观察到光谱中系统的压力相关变化,该变化可通过可重现的压力控制来消除。我们描述了一种适用于ATR压力塔的压力传感器,可在ATR采样期间对压力进行更严格的控制。

著录项

  • 作者

    Lu, Zhenyu.;

  • 作者单位

    University of South Carolina.;

  • 授予单位 University of South Carolina.;
  • 学科 Biochemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 91 p.
  • 总页数 91
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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