Uzun Hilal, Curthoys Ian S, Jones Allan S
Australian Key Centre for Microscopy and Microanalysis, University of Sydney, Sydney, NSW, Australia.
Acta Otolaryngol. 2007 Jun;127(6):568-73. doi: 10.1080/00016480600951509.
Through the application of high resolution X-ray micro-tomography and a method of contrast enhancement based on en bloc staining in osmium tetroxide (OsO4), we report an approach that facilitates accurate three-dimensional (3D) reconstruction to reveal the fine structure of the inner ear.
To overcome the problems of artefacts, including tissue distortion and loss of 3D context that are inherent in existing methods that rely on manual dissection and/or histological sectioning.
A staining protocol was developed that involved the en bloc application of the OsO4 solution (2% w/v) for an extended period of time. The samples were then scanned using an X-ray micro-tomography platform and subsequent 3D visualizations were constructed.
The digital nature of the data allowed a complete 3D contextual visualization to be constructed whereby the individual sensory structures could be seen in relation to other inner ear structures. This included a detailed anatomy of the membranous labyrinth and nerve supply including the spatial configuration of the utricular and saccular maculae. This is a new way of undertaking temporal bone histology.
通过应用高分辨率X射线显微断层扫描技术以及基于四氧化锇(OsO4)整体染色的对比度增强方法,我们报告了一种有助于进行精确三维(3D)重建以揭示内耳精细结构的方法。
克服现有依赖手工解剖和/或组织切片方法中固有的伪影问题,包括组织变形和三维背景信息丢失。
制定了一种染色方案,其中包括长时间整体应用OsO4溶液(2% w/v)。然后使用X射线显微断层扫描平台对样本进行扫描,并构建后续的三维可视化图像。
数据的数字特性使得能够构建完整的三维背景可视化图像,从而可以看到各个感觉结构与其他内耳结构的关系。这包括膜迷路和神经供应的详细解剖结构,包括椭圆囊斑和球囊斑的空间构型。这是进行颞骨组织学研究的一种新方法。