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血管铸型的扫描电子显微镜检查——技术与应用

Scanning electron microscopy of vascular corrosion casts--technique and applications.

作者信息

Lametschwandtner A, Lametschwandtner U, Weiger T

出版信息

Scan Electron Microsc. 1984(Pt 2):663-95.

PMID:6385220
Abstract

The present paper states very briefly the main steps leading to the technique of scanning electron microscopy (SEM) of vascular corrosion casts. From the terms presently used (injection method, microcorrosion cast, injection replica, vascular corrosion cast, vascular cast) the use of "vascular corrosion cast" for lymphatic and blood vessels is recommended. Specification and pretreatment (kind, volume, dosage of anticoagulants, vasoactive substances and spasmolytica used) of the animals examined are referenced as they are available from the literature. The recommendation is given to pay more attention to these parameters than done so far. The steps necessary for producing reasonable and suitable vascular corrosion casts are critically described. Special attention is paid to the physical and chemical properties of the casting media and their significance for polymerizations, shrinkage, casting quality, corrosion resistance, and thermal and spatial stability. Emphasis is also focused on the advantages of cutting the vascular corrosion casts embedded in an ice block by a band saw and a self constructed multi-blade cutting device offer. From the drying methods presently used freeze-drying is stressed because of minimal specimen damage. To render casts conductive in most cases sputtercoating is sufficient. It is recommended to run the SEM with 5-10 kV since the resolution received still reveals all details the casting media presently can replicate. Lastly the application of scanning electron microscopy of vascular corrosion casts in fully differentiated normal tissue, in pathologic tissue as well as in developing tissues and organs is stated.

摘要

本文简要阐述了血管铸型扫描电子显微镜术(SEM)技术的主要步骤。从目前使用的术语(注射法、微腐蚀铸型、注射复制品、血管腐蚀铸型、血管铸型)来看,建议使用“血管腐蚀铸型”来指代淋巴管和血管。文中引用了所检查动物的规格及预处理方法(所用抗凝剂、血管活性物质和解痉剂的种类、体积、剂量),这些内容可从文献中获取。建议比以往更加关注这些参数。文中批判性地描述了制作合理且合适的血管腐蚀铸型所需的步骤。特别关注了铸型介质的物理和化学性质及其对聚合、收缩、铸型质量、耐腐蚀性以及热稳定性和空间稳定性的意义。重点还放在了用带锯切割嵌入冰块中的血管腐蚀铸型以及自行制作的多刀片切割装置所具有的优势上。从目前使用的干燥方法来看,由于对标本的损伤最小,所以强调冷冻干燥。在大多数情况下,溅射镀膜足以使铸型具有导电性。建议以5 - 10 kV的电压运行扫描电子显微镜,因为所获得的分辨率仍能揭示铸型介质目前所能复制的所有细节。最后阐述了血管腐蚀铸型扫描电子显微镜术在完全分化的正常组织、病理组织以及发育中的组织和器官中的应用。

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