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Rapid Prototyping of Polyurethane for the Creation of Vascular Systems

机译:聚氨酯的快速原型设计,用于创建血管系统

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A precise control aver the internal architecture was essential for manufacture of complex organs.To create vascular systems that mimic human livers,we designed and fabricated complex 3D objects with an intrinsic network of interconnected channels.A new elastomeric polyurethane,mainly based on polycaprolactone and poly(ethylene glycol)with excellent biocompatibility and tunable biodegradation properties,was used to fabricate these vascular systems using a low temperature deposition system based on the layer-by-layer manufacturing principle.A specific model was selected via computer aided design(CAD),solid free form fabrication processes are conducted under computer direction.Two example object patterns were produced by precision controlled dispensing of a biodegradable polyurethane into 3D multi-micro-tunnels with multi-micro-pores at a low temperature(-28°C).The design and fabrication strategies used to create physical objects directly from CAD models represent a promising route for the establishment of complex organ vascular systems.
机译:精确的控制平均值是制造复杂器官必不可少的内部体系结构。要创建模仿人体肝脏的血管系统,我们设计并制造了具有相互连接通道固有网络的复杂3D对象。一种新型的弹性聚氨酯,主要基于聚己内酯和聚具有良好生物相容性和可调节的生物降解特性的(乙二醇)被用于基于逐层制造原理的低温沉积系统制造这些血管系统。通过计算机辅助设计(CAD)选择特定模型,固体在计算机方向上进行自由形式的制造过程。在低温(-28°C)下,通过将可生物降解的聚氨酯精确控制地分配到具有多个微孔的3D多个微隧道中,制作了两个示例对象图案。直接从CAD模型创建物理对象的制造策略和制造策略代表了一条有希望的发展途径e建立复杂的器官血管系统。

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