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Iodine-Enhanced Micro-CT Imaging of Soft Tissue on the Example of Peripheral Nerve Regeneration

机译:软组织碘增强显微CT成像的周围神经再生

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摘要

Microcomputed tomography (μCT) is widely used for the study of mineralized tissues, but a similar use for soft tissues is hindered by their low X-ray attenuation. This limitation can be overcome by the recent development of different staining techniques. Staining with Lugol's solution, a mixture of one part iodine and two parts potassium iodide in water, stands out among these techniques for its low complexity and cost. Currently, Lugol staining is mostly used for anatomical examination of tissues. In the present study, we seek to optimize the quality and reproducibility of the staining for ex vivo visualization of soft tissues in the context of a peripheral nerve regeneration model in the rat. We show that the staining result not only depends on the concentration of the staining solution but also on the amount of stain in relation to the tissue volume and composition, necessitating careful adaptation of the staining protocol to the respective specimen tissue. This optimization can be simplified by a stepwise staining which we show to yield a similar result compared to staining in a single step. Lugol staining solution results in concentration-dependent tissue shrinkage which can be minimized but not eliminated. We compared the shrinkage of tendon, nerve, skeletal muscle, heart, brain, and kidney with six iterations of Lugol staining. 60 ml of 0.3% Lugol's solution per cm3 of tissue for 24 h yielded good results on the example of a peripheral nerve regeneration model, and we were able to show that the regenerating nerve inside a silk fibroin tube can be visualized in 3D using this staining technique. This information helps in deciding the region of interest for histological imaging and provides a 3D context to histological findings. Correlating both imaging modalities has the potential to improve the understanding of the regenerative process.
机译:微型计算机断层扫描(μCT)被广泛用于矿化组织的研究,但是软组织的类似用途因其X射线衰减低而受到阻碍。这种限制可以通过不同染色技术的最新发展来克服。用Lugol溶液染色时,水中的一种碘和两种碘化钾的混合物因其低复杂性和低成本而脱颖而出。目前,Lugol染色主要用于组织的解剖学检查。在本研究中,我们寻求优化染色的质量和重现性,以在大鼠周围神经再生模型的背景下对软组织进行离体可视化。我们显示出染色结果不仅取决于染色溶液的浓度,而且取决于与组织体积和组成有关的染色量,因此需要仔细调整染色方案对各个标本组织的适应性。通过分步染色可以简化此优化过程,与一步染色相比,分步染色显示出相似的结果。 Lugol染色溶液可导致浓度依赖性的组织收缩,这种收缩可被最小化但不能消除。我们通过六次Lugol染色比较了肌腱,神经,骨骼肌,心脏,大脑和肾脏的收缩。以周围神经再生模型为例,每cm 3 组织60μml0.3%的Lugol's溶液持续24 h效果良好,我们能够证明丝心蛋白管内的再生神经使用这种染色技术可以在3D中可视化。该信息有助于确定组织学成像的感兴趣区域,并为组织学发现提供3D背景。两种成像方式的相关性有可能增进对再生过程的理解。

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