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首页> 外文期刊>Scientific reports. >Visualising the 3D microstructure of stained and native intervertebral discs using X-ray microtomography
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Visualising the 3D microstructure of stained and native intervertebral discs using X-ray microtomography

机译:使用X射线显微断层摄影术可视化染色和天然椎间盘的3D微观结构

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Intervertebral disc degeneration (IVDD) is linked to low back pain. Microstructural changes during degeneration have previously been imaged using 2D sectioning techniques and 3D methods which are limited to small specimens and prone to inducing artefacts from sample preparation. This study explores micro computed X-ray tomography (microCT) methods with the aim of resolving IVD 3D microstructure whilst minimising sample preparation artefacts. Low X-ray absorption contrast in non-mineralised tissue can be enhanced using staining and phase contrast techniques. A step-wise approach, including comparing three stains, was used to develop microCT for bovine tail IVD using laboratory and synchrotron sources. Staining successfully contrasted collagenous structures; however not all regions were stained and the procedure induced macroscopic structural changes. Phase contrast microCT of chemically fixed yet unstained samples resolved the nucleus pulposus, annulus fibrosus and constituent lamellae, and finer structures including collagen bundles and cross-bridges. Using the same imaging methods native tissue scans were of slightly lower contrast but free from sample processing artefacts. In the future these methods may be used to characterise structural remodelling in soft (non-calcified) tissues and to conduct in situ studies of native loaded tissues and constructs to characterise their 3D mechanical properties.
机译:椎间盘退变(IVDD)与腰痛有关。先前已经使用2D切片技术和3D方法对变性期间的微观结构变化进行了成像,这些技术仅限于小样本,并且容易从样品制备中诱发伪像。这项研究探索了微计算机X射线断层扫描(microCT)方法,旨在解决IVD 3D微观结构,同时最大程度地减少样品制备伪影。可以使用染色和相衬技术来增强非矿化组织中的低X射线吸收衬度。使用包括比较三种染色剂的分步方法,使用实验室和同步加速器源开发了用于牛尾IVD的microCT。染色成功地对比了胶原结构;然而,并非所有区域都被染色,并且该程序引起宏观结构变化。化学固定但未染色的样品的相衬微CT分辨了髓核,纤维环和组成层,以及更精细的结构,包括胶原束和跨桥。使用相同的成像方法,天然组织扫描的对比度稍低,但没有样品处理伪像。将来,这些方法可用于表征软(非钙化)组织中的结构重塑,以及对天然加载的组织和构建体进行原位研究以表征其3D力学性能。

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