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使用环境扫描电子显微镜(ESEM)对肠黏膜进行观察;与传统扫描电子显微镜(CSEM)的比较。

Observations of the intestinal mucosa using environmental scanning electron microscopy (ESEM); comparison with conventional scanning electron microscopy (CSEM).

作者信息

Habold Caroline, Dunel-Erb Suzanne, Chevalier Claudine, Laurent Pierre, Le Maho Yvon, Lignot Jean-Hervé

机构信息

Centre National de la Recherche Scientifique, Centre d'Ecologie et de Physiologie Energétiques, 23 rue Becquerel, F-67087 Strasbourg cedex 2, France.

出版信息

Micron. 2003;34(8):373-9. doi: 10.1016/S0968-4328(03)00080-5.

Abstract

In order to evaluate the potential use of environmental scanning electron microscopy (ESEM) in biology, structural changes of the jejunal villi of rats were studied after periods of fasting and refeeding, using a conventional scanning electron microscope (CSEM) and ESEM. While observation using the CSEM, involves chemical fixation, drying and coating, observation of fresh, unprepared materials can be directly realized with the ESEM. Environmental microscopy provides a relatively new technology for imaging hydrated materials without specimen preparation and conductive coating. Direct observation of biological samples in their native state is therefore possible with an ESEM. After fasting, the jejunal mucosa is dramatically reduced in size, splits and holes appearing at the tip of the villi. These changes were observed whatever the type of technique used. Artifacts due to the sample preparation for CSEM observation (drying, coating) can therefore be excluded. However, CSEM and ESEM must be used jointly. While, CSEM must be preferred for surface analysis involving high magnifications, ESEM observation, on the other hand, can prove valuable for determining the living aspect of the samples.

摘要

为了评估环境扫描电子显微镜(ESEM)在生物学中的潜在用途,利用传统扫描电子显微镜(CSEM)和ESEM研究了大鼠空肠绒毛在禁食和重新喂食后的结构变化。使用CSEM进行观察时,需要进行化学固定、干燥和镀膜,而使用ESEM则可以直接对新鲜的、未处理的材料进行观察。环境显微镜为无需样品制备和导电镀膜的含水材料成像提供了一种相对较新的技术。因此,使用ESEM可以直接观察生物样品的天然状态。禁食后,空肠黏膜尺寸显著减小,绒毛顶端出现分裂和孔洞。无论使用何种技术,均可观察到这些变化。因此,可以排除因CSEM观察的样品制备(干燥、镀膜)而产生的假象。然而,必须联合使用CSEM和ESEM。虽然在进行高倍表面分析时,CSEM更具优势,但另一方面,ESEM观察对于确定样品的活体状态可能很有价值。

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