首页> 外文期刊>Applied Spectroscopy >Study of Inorganic Particles, Fibers, and Asbestos Bodies by Variable Pressure Scanning Electron Microscopy with Annexed Energy Dispersive Spectroscopy and Micro-Raman Spectroscopy in Thin Sections of Lung and Pleural Plaque
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Study of Inorganic Particles, Fibers, and Asbestos Bodies by Variable Pressure Scanning Electron Microscopy with Annexed Energy Dispersive Spectroscopy and Micro-Raman Spectroscopy in Thin Sections of Lung and Pleural Plaque

机译:可变压力扫描电子显微镜与附能谱仪和显微拉曼光谱仪在肺和胸膜斑块的薄层中研究无机颗粒,纤维和石棉尸体

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In a previous work it has been demonstrated that micro-Raman spectroscopy is a technique able to recognize crystalline phases on untreated samples. In that case, inorganic particles and uncoated fibers from bronchoalveolar lavage (BAL) of a patient affected by pneumoconiosis were identified and characterized. In this work the technique is applied to asbestos bodies, that is, to coated fibers, and on crystallizations and fibrous phases observed in the plural plaque from patients affected by mesothelioma. From the Raman analysis the abundant fibrous material observed in the pleural area is talc, whereas rounded grains in the pleural tissue show the Raman spectrum of apatite, a calcium phosphate mineral particular to bones. In the pulmonary tissue many asbestos bodies, consisting of the incorporated fibers coated by iron-rich proteins, were observed. Under the 632.8 nm laser beam of the spectrometer, photo-crystallization of hematite in the iron-rich material forming the asbestos bodies can be proposed by the changes in the Raman spectra acquired during subsequent acquisitions. Nevertheless, the identification of the mineral phase constituting the incorporated fiber was possible by analyzing the Raman spectra; the results were confirmed by variable pressure scanning electron microscopy with annexed energy dispersive spectroscopy (VP-SEM-EDS) analyses.
机译:在以前的工作中,已经证明微拉曼光谱法是一种能够识别未处理样品上晶相的技术。在那种情况下,鉴定和表征了尘肺病患者的来自支气管肺泡灌洗(BAL)的无机颗粒和未涂覆的纤维。在这项工作中,该技术被应用于石棉体,即被涂覆的纤维,以及被间皮瘤患者从多个菌斑中观察到的结晶和纤维相。根据拉曼分析,在胸膜区域观察到的丰富的纤维材料是滑石粉,而胸膜组织中的圆形颗粒显示了磷灰石的拉曼光谱,磷灰石是骨骼特有的磷酸钙矿物。在肺组织中,观察到许多石棉体,由掺有铁的蛋白涂层的纤维组成。在光谱仪的632.8 nm激光束下,赤铁矿在形成石棉体的富铁材料中的光结晶可以通过随后采集中拉曼光谱的变化来提出。然而,通过分析拉曼光谱可以鉴定构成掺入纤维的矿物相。结果通过可变压力扫描电子显微镜和附加的能量色散光谱法(VP-SEM-EDS)分析得到证实。

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    《Applied Spectroscopy》 |2010年第6期|571-577|共7页
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