Sartori Julian, Köhring Sebastian, Witte Hartmut, Fischer Martin S, Löffler Markus
Institut für Zoologie und Evolutionsforschung, Friedrich-Schiller-Universität Jena, Jena, Germany.
Fachgebiet Biomechatronik, Fakultät für Maschinenbau / IMN MacroNano®, Technische Universität Ilmenau, Ilmenau, Germany.
J Anat. 2018 Jun 19;233(3):370-80. doi: 10.1111/joa.12837.
The whole-organ, three-dimensional microstructure of murine Achilles tendon entheses was visualized with micro-computed tomography (microCT). Contrast-enhancement was achieved either by staining with phosphotungstic acid (PTA) or by a combination of cell-maceration, demineralization and critical-point drying with low tube voltages and propagation-based phase-contrast (fibrous structure scan). By PTA-staining, X-ray absorption of the enthesial soft tissues became sufficiently high to segment the tendon and measure cross-sectional areas along its course. With the fibrous structure scans, three-dimensional visualizations of the collagen fiber networks of complete entheses were obtained. The characteristic tissues of entheses were identified in the volume data. The tendon proper was marked as a segment manually. The fibers within the tendon were marked by thresholding. Tendon and fiber cross-sectional areas were measured. The measurements were compared between individuals and protocols for contrast-enhancement, using a spatial reference system within the three-dimensional enthesis. The usefulness of the method for investigations of the fibrous structure of collagenous tissues is demonstrated.
利用微型计算机断层扫描(microCT)对小鼠跟腱附着点的全器官三维微观结构进行了可视化。通过用磷钨酸(PTA)染色,或通过细胞浸解、脱矿质以及在低管电压下进行临界点干燥并结合基于传播的相衬(纤维结构扫描)来实现对比度增强。通过PTA染色,附着点软组织的X射线吸收变得足够高,从而能够分割肌腱并测量其沿行程的横截面积。通过纤维结构扫描,获得了完整附着点胶原纤维网络的三维可视化图像。在体积数据中识别出附着点的特征组织。将肌腱本体手动标记为一个节段。通过阈值处理对肌腱内的纤维进行标记。测量肌腱和纤维的横截面积。使用三维附着点内的空间参考系统,比较个体之间以及对比度增强方案之间的测量结果。证明了该方法在研究胶原组织纤维结构方面的实用性。