古代和现代的骨诊断:为了更好地理解化学和结构特征的改变
M-Ali H Al-Akhras1, M A Alebrahim2, Ali S Ba Rajjash1
1Bio-Medical Physics Laboratory, Department of Physics, Jordan University of Science & Technology (JUST), P.O. Box 3030, Irbid 22110, Jordan.
Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy
|October 18, 2024
概括
与古代骨头相比,现代骨头表现出更高的结晶性和更多的位点替代,红外光谱和X射线衍射揭示了这一点. 这些发现增强了对考古样本中生物酸盐基因的理解.
科学领域:
- 地质化学 地质化学
- 生物矿物化 生物矿物化
- 频谱学是一种光谱学.
背景情况:
- 病原体显著改变生物酸盐的化学和结构性质.
- 减弱总反射 - 里埃变换红外光谱 (ATR-FTIR) 对于分析这些生物适应性变化至关重要.
- 了解骨基因组对于考古学,人类学和法医学至关重要.
研究的目的:
- 为了比较现代和古代骨标本的化学和结构成分.
- 为了研究骨基因发生过程中有机和矿物成分的变化.
- 应用红外光谱 (IR) 和X射线衍射 (XRD) 进行详细分析.
主要方法:
- 使用IR和XRD分析现代和考古骨样本.
- 研究有机和矿物成分的变化.
- 使用曲线拟合用于碳酸盐替代分析在氧酸盐网格内.
- 统计分析以验证发现.
主要成果:
- 现代骨显示出比古代骨更高的原交叉链和矿物质成熟度.
- 结晶度指数和半最大全宽度 (FWHM) 在现代骨中较高,IR和XRD证实了这一点.
- 碳酸盐与酸盐的比率 (C/P) 在现代骨中较低.
- 现代骨在氧基和酸盐部位表现出更大的替代.
结论:
- 现代骨具有比古代骨更好的结晶性.
- ATR-FTIR比率证实了现代骨炎中增加的位点替代.
- 这项研究提供了有关骨质交代及其对各种科学领域的影响的见解.
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