Sitte H
Universität des Saarlandes, Homburg-Saar, Germany.
Scanning Microsc Suppl. 1996;10:387-463; discussion 463-6.
This review is concerned with the considerable progress in the field of cryo-ultramicrotomy (cryofixation, cryosectioning, investigation and analysis of cryosections) during recent years. This progress includes both more efficient instrumentation and methodology. The article is mainly directed to the investigation and analysis of frozen-hydrated sections in the low dose cryo-transmission electron microscopy (TEM) and cryo-energy filtered TEM (EFTEM). A general survey is followed by an evaluation of the different relevant procedures. Both cryo-ultramicrotomy for macromolecular cytochemistry (Tokuyasu technique) and cryo-ultramicrotomy for element analysis are only shortly mentioned without discussion of the chemical and analytical approach. Because of lack of first hand experience, cryo-sectioning for X-ray microanalysis in the frozen-hydrated state according to Hall and Gupta is not included into this review. The methods and instruments required for ultrathin sectioning at low temperatures are described and discussed in detail. This concerns the preceding cryofixation, the cryosectioning itself with special emphasis to the required stability and precision of the cryo-ultramicrotome, the characteristics of the knives, the charging phenomena due to sectioning and the subsequent TEM investigation including EFTEM with electron spectroscopic imaging (ESI) and the available accessories for digital low dose registration of signals.
本综述关注近年来低温超薄切片技术(冷冻固定、冷冻切片、冷冻切片的研究与分析)领域取得的显著进展。这一进展包括更高效的仪器设备和方法。本文主要针对低剂量冷冻透射电子显微镜(TEM)和冷冻能量过滤透射电子显微镜(EFTEM)中冷冻水合切片的研究与分析。在进行总体概述之后,对不同的相关程序进行了评估。大分子细胞化学的低温超薄切片技术(德久保技术)和元素分析的低温超薄切片技术仅作了简要提及,未讨论化学和分析方法。由于缺乏第一手经验,根据霍尔和古普塔的方法在冷冻水合状态下进行X射线微分析的冷冻切片未纳入本综述。详细描述并讨论了低温下超薄切片所需的方法和仪器。这涉及到之前的冷冻固定、冷冻切片本身,特别强调冷冻超薄切片机所需的稳定性和精度、刀的特性、切片过程中的充电现象以及随后的TEM研究,包括带有电子光谱成像(ESI)的EFTEM以及用于数字低剂量信号记录的可用附件。