Investigation of temporal bone anatomy by plastic moulding and cryomicrotomy.

H Wilbrand, W Rauschning
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引用次数: 26

Abstract

To increase our understanding of the complex topographic relations between temporal bone structures and to facilitate the interpretation of their radiographic images, two techniques were developed. Plastic moulding of temporal bone specimens using polyester resin and silicone rubber substances providing detailed information and a three-dimensional survey of the structures. Carefully macerated temporal bone specimens are filled with plastic material under vacuum and the bone is then dissolved. The preparations, freed from irrelevant structures and embellished, allow metric evaluation of the different structures and their topographic relations. Automatic serial cryomicrotomy of fresh, deep-frozen temporal bones, using a commercial sledge-cryomicrotome. Photography of the cut surfaces of the specimen, usually at distance of 0.25 to 0.50 mm, allows natural-colour reproduction of minute detail, e.g. the melanin cell area in the cochlea, the smallest vessels on the ossicular surfaces, and the origin of the cochlear aqueduct at the basal turn of the cochlea. By correlating the photographs with images from the corresponding tomographic planes accurate information is obtained for interpretation of the radiographic images. A combination of the two techniques facilitates a detailed study and is a valuable aid in the teaching of temporal bone anatomy.

颞骨的塑模和冷冻切片解剖研究。
为了增加我们对颞骨结构之间复杂的地形关系的理解,并促进其放射图像的解释,我们开发了两种技术。使用聚酯树脂和硅橡胶物质对颞骨标本进行塑料模塑,提供详细信息和三维结构调查。仔细浸泡的颞骨标本在真空下填充塑料材料,然后溶解骨头。这些准备工作,从无关的结构和修饰中解放出来,允许对不同的结构及其地形关系进行度量评估。使用商用雪橇冷冻切片机对新鲜深冻颞骨进行自动连续冷冻切片。通常在0.25至0.50毫米的距离上对标本的切割表面进行摄影,可以自然地再现微小的细节,例如耳蜗中的黑色素细胞区域,听骨表面上最小的血管,以及耳蜗基底转处的耳蜗导水管的起源。通过将照片与相应层析平面的图像相关联,可以获得射线图像解释的准确信息。两种技术的结合有助于进行详细的研究,并对颞骨解剖的教学有价值的帮助。
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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