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A mosaic structure multi-level vascular network design for skull tissue engineering

机译:颅骨组织工程马赛克结构多级血管网络设计

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摘要

In human skull tissue engineering scaffolds, cell growth and osteogenesis are limited due to the lack of vascular structure. Therefore, a mosaic structure vascular parameterized design method is proposed according to the scanning characteristics of the diploic vein. Using micro-CT scans of skull samples, the features of the diploic vein were extracted, and a multi-level vascular network model was established based on a power diagram. Considering the characteristics of blood flow in the veins, finite element analysis (FEA) of the fluid-solid coupling was established to analyze the effect of blood on vessels with four-level mosaic structures. The results showed that the deformation and stress distribution of vessels were reasonable, and the blood pressure, velocity and shear stress in the designed vascular structure could meet the cell growth requirements. The mosaic structure was prepared by PDMS and cultured in vitro using HUVECs. It was found that most of the cells survived after 48 h, and some cells were attached to the surface mosaic structure. In this method, different levels of vessels nest together, with a curvature that matches the shape of the skull, forming a similar morphology to the native diploic vein, and the local structures can be adjusted flexibly. This mosaic structure vascular design method can be used for network vascular design and experimental studies in hard tissues.
机译:在人颅骨组织工程支架中,由于缺乏血管结构,细胞生长和骨发生受到限制。因此,根据代表静脉的扫描特性提出了一种马赛克结构血管参数化设计方法。利用颅骨样品的微型CT扫描,提取了代表静脉的特征,基于电源图建立了多级血管网络模型。考虑到静脉中血流的特征,建立了流体固耦合的有限元分析(FEA),以分析血液对四级马赛克结构的影响。结果表明,血管的变形和应力分布是合理的,并且设计的血管结构中的血压,速度和剪切应力可以满足细胞生长要求。马赛克结构通过PDMS制备并使用HUVEC体外培养。结果发现,大多数细胞在48小时后存活,并且将一些细胞连接到表面马赛克结构上。在该方法中,不同水平的容器嵌套在一起,曲率与颅骨的形状匹配,形成与天然代甲静脉相似的形态,并且可以灵活地调节局部结构。这种马赛克结构血管设计方法可用于硬组织中的网络血管设计和实验研究。

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