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A combined additive layer manufacturing / indirect replication method to prototype 3D vascular-like structures of soft tissue and endocrine organs

机译:一种组合的添加层制造/间接复制方法,用于制作软组织和内分泌器官的3D血管样结构原型

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摘要

We describe an innovative methodology combining Additive Layer Manufacturing (ALM) and indirect replication to reconstruct reticular-like, three-dimensional (3D) structures mimicking the vascular network of soft tissue and endocrine organs. Using a fractal-like algorithm capable of modelling the intraparenchymal vascular distribution of these viscera, single intraglandular branches of the human thyroid arteries were prototyped with synthetic resin, based on the algorithmic standard to layer (STL) output and ALM techniques. Satisfactory dimensional accuracy was obtained for these models, which were used as masters to evaluate protocols for their indirect replication, through both single and double procedures. Additional studies were conducted using casts of the human kidney arteries, obtained by injection / corrosion of the isolated organ. Satisfactory 3D reproduction of the external morphology of the kidney vessels was achieved. We conclude that our approach has the potential to develop up to the reconstruction with biomaterials of an entire, intraparenchymal vascular tree of soft tissue and endocrine organs.
机译:我们描述了一种创新的方法,将添加层制造(ALM)和间接复制相结合,以重建网状样,三维(3D)结构,模仿软组织和内分泌器官的血管网络。使用能够模拟这些内脏实质实质内血管分布的类似分形算法,根据算法标准分层(STL)输出和ALM技术,使用合成树脂对人类甲状腺动脉的单个腺内分支进行原型制作。这些模型获得了令人满意的尺寸精度,这些模型被用作母版,可以通过一次和两次程序评估其间接复制的方案。使用通过注射/腐蚀离体器官获得的人肾动脉管型进行了其他研究。肾脏血管外部形态的3D复制令人满意。我们得出的结论是,我们的方法具有利用软组织和内分泌器官的整个实质内血管树的生物材料进行重建的潜力。

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