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Direct MicroCT imaging of non-mineralized connective tissues at high resolution

机译:对未矿化的结缔组织进行高分辨率的直接MicroCT成像

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摘要

The 3D imaging of soft tissues in their native state is challenging, especially when high resolution is required. An X-ray-based microCT is, to date, the best choice for high resolution 3D imaging of soft tissues. However, since X-ray attenuation of soft tissues is very low, contrasting enhancement using different staining materials is needed. The staining procedure, which also usually involves tissue fixation, causes unwanted and to some extent unknown tissue alterations. Here, we demonstrate that a method that enables 3D imaging of soft tissues without fixing and staining using an X-ray-based bench-top microCT can be applied to a variety of different tissues. With the sample mounted in a custom-made loading device inside a humidity chamber, we obtained soft tissue contrast and generated 3D images of fresh, soft tissues with a resolution of 1 micron voxel size. We identified three critical conditions which make it possible to image soft tissues: humidified environment, mechanical stabilization of the sample and phase enhancement. We demonstrate the capability of the technique using different specimens: an intervertebral disc, the non-mineralized growth plate, stingray tessellated radials (calcified cartilage) and the collagenous network of the periodontal ligament. Since the scanned specimen is fresh an interesting advantage of this technique is the ability to scan a specimen under load and track the changes of the different structures. This method offers a unique opportunity for obtaining valuable insights into 3D structure-function relationships of soft tissues.
机译:原始状态的软组织的3D成像具有挑战性,尤其是在需要高分辨率时。迄今为止,基于X射线的microCT是软组织高分辨率3D成像的最佳选择。但是,由于软组织的X射线衰减非常低,因此需要使用不同的染色材料进行对比增强。染色过程通常也涉及组织固定,会引起不需要的和某种程度上未知的组织改变。在这里,我们证明了一种能够对软组织进行3D成像而无需使用基于X射线的台式microCT进行固定和染色的方法,可以应用于多种不同的组织。将样品安装在湿度箱内的定制加载设备中,我们获得了软组织对比,并生成了分辨率为1微米体素大小的新鲜软组织的3D图像。我们确定了使软组织成像的三个关键条件:潮湿的环境,样品的机械稳定性和相增强。我们展示了使用不同标本的技术能力:椎间盘,非矿化生长板,黄貂鱼棋盘形radial骨(钙化软骨)和牙周膜的胶原网络。由于扫描的样本是新鲜的,因此该技术的一个有趣优势是能够在负载下扫描样本并跟踪不同结构的变化。此方法提供了一个独特的机会,可以获取对软组织的3D结构-功能关系的宝贵见解。

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