采用亚微米厚切片和一种新的染色方法对动物组织进行高分辨率光学显微镜观察。

Microscopica acta Pub Date : 1980-07-01
M del Cerro, N S Standler, C del Cerro
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引用次数: 0

摘要

1微米厚塑料包埋材料切片的引入代表了光学显微镜下组织研究的巨大技术进步。然而,当使用高数值孔径的油浸物镜观察时,即使这个厚度的剖面也显得太厚了。这些透镜极浅的景深使它们能够在一微米厚的截面内区分几个焦平面。这反过来又会导致从失焦结构中形成鬼像,这是一个在尝试显微摄影时特别令人烦恼的问题。为了克服这个困难,我们将切片的厚度减小到0.4微米的最佳厚度。这些较薄的切片确实需要很强的染色才能与细胞结构形成足够的对比;斯蒂夫蓝,一种最近适用于塑料切片的染色方法[del Cerro等人,Microsc]。Acta 83,(2), 117—121(1980)]被证明是最适合这个目的的几个污点测试。总之,亚微米厚的切片染色与史蒂文尼尔蓝允许达到能见度的限制,允许最好的物镜和有效地合并的领域,光学显微镜与低功率电子显微镜。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High resolution optical microscopy of animal tissues by the use of sub-micrometer thick sections and a new stain.

The introduction of 1 micron-thick sections from plastic embedded material represents a great technical improvement for the study of tissues under the optical microscope. However, even sections of this thickness appear too thick when observed with oil immersion objectives of high numerical aperture. The extremely shallow depth of field of these lenses allows them to differentiate several focal planes within a one micron thick section. This in turn results in ghost images being formed from out of focus structures, a problem particularly vexing when photomicrography is attempted. To circumvent this difficulty, we reduced the thickness of the sections down to an optimum of 0.4 micron. These thinner sections do require a very energetic stain to give enough contrast to the cellular structures; Stevenel Blue, a stain recently adapted for plastic sections [del Cerro et al., Microsc. Acta 83, (2), 117--121 (1980)] proved to be the most suitable for this purpose of several stains tested. In summary, submicrometer thick sections stained with Stevenel Blue allow to reach the limits of visibility permitted by the best available objectives and effectively merge the realm of optical microscopy with that of low power electron microscopy.

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