Cnudde V, Masschaele B, De Cock H E V, Olstad K, Vlaminck L, Vlassenbroeck J, Dierick M, Witte Y D, Van Hoorebeke L, Jacobs P
Department of Geology and Soil Science, Ghent University, Krijgslaan 281/S8, B-9000, Ghent, Belgium.
J Microsc. 2008 Dec;232(3):476-85. doi: 10.1111/j.1365-2818.2008.02142.x.
Micro-CT is a non-destructive technique for 3D tomographic investigation of an object. A 3D representation of the internal structure is calculated based on a series of X-ray radiographs taken from different angles. The spatial resolution of current laboratory-used micro-CT systems has come down over the last years from a few tens of microns to a few microns. This opens the possibility to perform histological investigations in 3D on a virtual representation of a sample, referred to as virtual 3D histology. The advantage of micro-CT based virtual histology is the immediate and automated 3D visualization of the sample without prior slicing, sample preparation like decalcification, photographing and aligning. This not only permits a drastic reduction in preparation time but also offers the possibility to easily investigate objects that are difficult to slice. This article presents results that were obtained on punch biopsies of horse skin, (dental) alveolus of ponies and chondro-osseous samples from the tarsus of foals studied with the new high resolution micro-CT set-up (HRXCT) at the Ghent University (Belgium) (http://www.ugct.ugent.be). This state-of-the-art set-up provides a 1 micron resolution and is therefore ideally suited for a direct comparison with standard light microscopy-based histology.
微计算机断层扫描(Micro-CT)是一种用于对物体进行三维断层成像研究的无损技术。基于从不同角度拍摄的一系列X射线照片计算出物体内部结构的三维表示。在过去几年中,目前实验室使用的微计算机断层扫描系统的空间分辨率已从几十微米降至几微米。这为在样品的虚拟表示上进行三维组织学研究(即虚拟三维组织学)开辟了可能性。基于微计算机断层扫描的虚拟组织学的优势在于无需预先切片、进行脱钙等样品制备、拍照和对齐,就能立即自动对样品进行三维可视化。这不仅能大幅减少制备时间,还提供了轻松研究难以切片的物体的可能性。本文展示了使用比利时根特大学(http://www.ugct.ugent.be)的新型高分辨率微计算机断层扫描设备(HRXCT)对马皮肤穿刺活检、小马(牙齿)牙槽以及马驹跗骨的软骨骨样本进行研究所得的结果。这种最先进的设备提供1微米的分辨率,因此非常适合与基于标准光学显微镜的组织学进行直接比较。