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3D Printing of Artificial Blood Vessel: Study on Multi-Parameter Optimization Design for Vascular Molding Effect in Alginate and Gelatin

机译:人造血管的3D打印:海藻酸盐和明胶中血管成型效果的多参数优化设计研究

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3D printing has emerged as one of the modern tissue engineering techniques that could potentially form scaffolds (with or without cells), which is useful in treating cardiovascular diseases. This technology has attracted extensive attention due to its possibility of curing disease in tissue engineering and organ regeneration. In this paper, we have developed a novel rotary forming device, prepared an alginate?¢????gelatin solution for the fabrication of vessel-like structures, and further proposed a theoretical model to analyze the parameters of motion synchronization. Using this rotary forming device, we firstly establish a theoretical model to analyze the thickness under the different nozzle extrusion speeds, nozzle speeds, and servo motor speeds. Secondly, the experiments with alginate?¢????gelatin solution are carried out to construct the vessel-like structures under all sorts of conditions. The experiment results show that the thickness cannot be adequately predicted by the theoretical model and the thickness can be controlled by changing the parameters. Finally, the optimized parameters of thickness have been adjusted to estimate the real thickness in 3D printing.
机译:3D打印已经成为一种现代的组织工程技术,可以潜在地形成支架(有或没有细胞),可用于治疗心血管疾病。由于该技术可以治愈组织工程和器官再生中的疾病,因此引起了广泛的关注。在本文中,我们开发了一种新型的旋转成形设备,制备了藻酸盐-明胶溶液用于制造血管状结构,并进一步提出了用于分析运动同步参数的理论模型。我们首先使用这种旋转成型设备建立一个理论模型,以分析不同喷嘴挤出速度,喷嘴速度和伺服电机速度下的厚度。其次,在各种条件下进行了藻酸盐明胶溶液的实验,以构建血管样结构。实验结果表明,理论模型不能充分预测厚度,可以通过改变参数来控制厚度。最后,调整了厚度的优化参数以估算3D打印中的实际厚度。

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