Cryofixation of tissue specimens studied by cooling rate measurements and scanning electron microscopy.

Microscopica acta Pub Date : 1980-03-01
K Zierold
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Abstract

The freezing velocity, the most important parameter for the quality of cryofixation of biological objects, was measured in frog liver specimens. The cooling course was found to depend on the size of the specimen, the specimen support and the cooling medium used (liquid nitrogen, supercooled nitrogen, Freon 12 and propane). The results were compared with scanning electron micrographs of freeze fractures cryofixed in the same manner: Propane yielded the highest cooling rates and, consequently, the best structural preservation. Morphologically similar results were obtained by combining Freon 12 and very small specimen supports. Generally, it can be said that the smaller both specimen and specimen support are, the higher is the freezing rate and the better the structural preservation. The findings are discussed with regard to further possibilities of improving the cryofixation of biological tissue.

用冷却速率测量和扫描电子显微镜研究组织标本的冷冻固定。
测定了蛙肝标本的冷冻速度,这是生物制品冷冻质量最重要的参数。研究发现,冷却过程取决于试样的尺寸、试样支架和所用的冷却介质(液氮、过冷氮、氟利昂12和丙烷)。结果与用相同方法冷冻的冷冻裂缝的扫描电子显微图进行了比较:丙烷产生了最高的冷却速率,因此,最好的结构保存。通过将氟利昂12与非常小的标本支架结合,得到了形态学上相似的结果。一般来说,可以说试件和试件支承越小,冻结速率越高,结构保存越好。研究结果讨论了进一步改善生物组织冷冻固定的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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