Kim Ki Woo, Jaksch Heiner
National Instrumentation Center for Environmental Management, Seoul National University, Seoul 151-921, Republic of Korea.
Micron. 2009 Oct;40(7):724-9. doi: 10.1016/j.micron.2009.05.001. Epub 2009 May 9.
Comparative surface imaging was performed on uncoated fungal spores and stained section-face by field emission scanning electron microscopy with an in-column energy-selective backscattered electron detector. Epoxy resin thin sections (ca. 200 and 500 nm thick) of the osmicated and uranyl acetate/lead citrate-stained fungus were examined with the microscope. Topographical contrast was evident in secondary electron imaging by either a below-lens or an in-lens detector. Meanwhile, low-loss backscattered electron images showed mainly compositional contrast at low accelerating voltages (mostly below 1 kV). With attenuated topographical contrast, several different electron densities could be detected, exhibiting several levels of electron density even on a flat plane of spines. Minute differences in topography on epoxy resin sections as seen by secondary electron imaging represented the periphery of the fungal spores and hyphae. On the other hand, the compositional contrast could be retrieved from stained section-face in low-loss BSE imaging, revealing subcellular entities after contrast inversion. The resolution of low-loss BSE imaging was sufficient to resolve plasma membrane, and various types of vacuoles and vesicles. These results suggest that low-loss backscattered electron imaging could potentially provide compositional information to resolve surface chemical features of uncoated microbial cells and stained section-face with heterogeneous surface compositions.
采用场发射扫描电子显微镜和柱内能量选择背散射电子探测器,对未包被的真菌孢子和染色的切片面进行了对比表面成像。用显微镜检查经锇酸处理和醋酸双氧铀/柠檬酸铅染色的真菌的环氧树脂薄片(约200和500纳米厚)。通过透镜下方或透镜内探测器进行二次电子成像时,地形对比度明显。同时,低损失背散射电子图像在低加速电压(大多低于1千伏)下主要显示成分对比度。由于地形对比度减弱,可以检测到几种不同的电子密度,即使在刺的平面上也呈现出几个电子密度水平。二次电子成像所见的环氧树脂切片上地形的微小差异代表了真菌孢子和菌丝的外围。另一方面,在低损失背散射电子成像中,可以从染色的切片面恢复成分对比度,在对比度反转后揭示亚细胞实体。低损失背散射电子成像的分辨率足以分辨质膜以及各种类型的液泡和囊泡。这些结果表明,低损失背散射电子成像有可能提供成分信息,以解析未包被的微生物细胞和具有异质表面成分的染色切片面的表面化学特征。