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重度眼烧伤的结膜组织检查:一项扫描电子显微镜和能量色散X射线分析研究

Conjunctival tissue examination in severe eye burns: a study with scanning electron microscopy and energy-dispersive X-ray analysis.

作者信息

Schirner G, Schrage N F, Salla S, Reim M, Burchard W G

机构信息

Augenklinik, Medizinische Universität zu Lübeck.

出版信息

Graefes Arch Clin Exp Ophthalmol. 1995 May;233(5):251-6. doi: 10.1007/BF00177645.

Abstract

BACKGROUND

Long-lasting inflammation is a major problem in treatment after severe eye burns and may find expression in an altered elemental composition of the conjunctiva. Particulate contamination of biological tissue induces such inflammatory processes. In the anterior eye segment, trauma or subsequent therapy may give rise to such contamination. Scanning electron microscopy and energy-dispersive X-ray analysis are able to detect traumatic residues of submicron size and changes of the elemental composition.

METHODS

Conjunctival specimens from first-time peridectomy of three healthy and nine severely burnt-eyes were examined with scanning electron microscopy and energy-dispersive X-ray analysis. The samples were prepared as cryo- or paraffin sections, mounted on carbon blocks and coated with evaporated elemental carbon.

RESULTS

The samples of healthy conjunctiva showed higher concentrations of Na, P and CI. These elements showed lower concentrations in conjunctival stroma of burnt eyes excised before the 20th day after trauma than in material obtained subsequently. In two burnt conjunctival specimens there was severe traumatic contamination with Ca in Ca(OH)2 and CaO burns, and in one case the traumatic substance was Si, in a peroxide plus silicone spray burn. In the remaining six cases, particulate contamination with Fe, Al, Ni, Zn, Cu, Ti and other substances was present in the burnt conjunctivas, while no contamination was detected in the specimens of healthy conjunctivas.

CONCLUSIONS

The origin of the contaminant particles is assumed to be the trauma itself and the subsequent therapy. These investigations stress the importance, for clinical purposes, or early peridectomy and contamination-free therapy.

摘要

背景

长期炎症是严重眼部烧伤后治疗中的一个主要问题,可能表现为结膜元素组成的改变。生物组织的微粒污染会引发此类炎症过程。在前房段,创伤或后续治疗可能导致这种污染。扫描电子显微镜和能量色散X射线分析能够检测亚微米尺寸的创伤残留物以及元素组成的变化。

方法

对3例健康眼和9例严重烧伤眼首次进行睑球粘连分离术时获取的结膜标本进行扫描电子显微镜和能量色散X射线分析。样本制备成冷冻切片或石蜡切片,安装在碳块上,并用蒸发的元素碳进行涂层处理。

结果

健康结膜样本中钠、磷和氯的浓度较高。这些元素在创伤后第20天之前切除的烧伤眼结膜基质中的浓度低于随后获取的样本。在2例烧伤结膜标本中,氢氧化钙和氧化钙烧伤存在严重的钙创伤污染,1例过氧化物加硅酮喷雾烧伤的创伤物质为硅。在其余6例中,烧伤结膜存在铁、铝、镍、锌、铜、钛和其他物质的微粒污染,而健康结膜标本中未检测到污染。

结论

污染物颗粒的来源被认为是创伤本身和随后的治疗。这些研究强调了早期睑球粘连分离术和无污染治疗在临床中的重要性。

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