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拉曼光谱的偏振控制优化了骨组织评估。

Polarization control of Raman spectroscopy optimizes the assessment of bone tissue.

机构信息

Tennessee Valley Healthcare System, Department of Veterans Affairs, Nashville, TN 27212, USA.

出版信息

J Biomed Opt. 2013 May;18(5):55005. doi: 10.1117/1.JBO.18.5.055005.

Abstract

There is potential for Raman spectroscopy (RS) to complement tools for bone diagnosis due to its ability to assess compositional and organizational characteristics of both collagen and mineral. To aid this potential, the present study assessed specificity of RS peaks to the composition of bone, a birefringent material, for different degrees of instrument polarization. Specifically, relative changes in peaks were quantified as the incident light rotated relative to the orientation of osteonal and interstitial tissue, acquired from cadaveric femurs. In a highly polarized instrument (10(6)∶1 extinction ratio), the most prominent mineral peak (ν1 Phosphate at 961 cm(-1)) displayed phase similarity with the Proline peak at 856 cm(-1). This sensitivity to relative orientation between bone and light observed in the highly polarized regime persisted for certain sensitive peaks (e.g., Amide I at 1666  cm(-1)) in unaltered instrumentation (200∶1 extinction ratio). Though Proline intensity changed with bone rotation, the phase of Proline matched that of ν1 Phosphate. Moreover, when mapping ν1 Phosphate/Proline across osteonal-interstitial borders, the mineralization difference between the tissue types was evident whether using a 20x or 50x objectives. Thus, the polarization bias inherent in commercial RS systems does not preclude the assessment of bone composition when using phase-matched peaks.

摘要

拉曼光谱(RS)有可能补充用于骨骼诊断的工具,因为它能够评估胶原和矿物质的组成和结构特征。为了发挥这种潜力,本研究评估了 RS 峰对不同仪器偏振程度下具有双折射性质的骨成分的特异性。具体来说,通过从尸体股骨中获取的骨单元和间质组织的取向,定量了相对峰强度的变化,这些峰是相对于入射光的旋转而变化的。在高度偏振的仪器(10(6)∶1 消光比)中,最显著的矿物峰(961 cm(-1)处的ν1 磷酸盐)与 856 cm(-1)处的脯氨酸峰具有相位相似性。在高度偏振的条件下观察到的这种骨与光之间相对取向的敏感性在某些敏感峰(例如,1666 cm(-1)处的酰胺 I)中仍然存在,仪器没有改变(200∶1 消光比)。尽管脯氨酸的强度随骨的旋转而变化,但脯氨酸的相位与 ν1 磷酸盐的相位匹配。此外,当在骨单元-间质边界上绘制 ν1 磷酸盐/脯氨酸时,无论使用 20x 还是 50x 物镜,组织类型之间的矿化差异都是显而易见的。因此,当使用相位匹配峰时,商业 RS 系统固有的偏振偏差并不排除对骨成分的评估。

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