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Modeling of multifunctional porous tissue scaffolds with continuous deposition path plan

机译:具有连续沉积路径计划的多功能多孔组织支架的建模

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摘要

A novel modeling technique for porous tissue scaffolds with targeting the functionally gradient variational porosity with continuous material deposition planning has been proposed. To vary the porosity of the designed scaffoldudfunctionally, medial axis transformation is used. The medial axis of each layers of the scaffold is calculated and used as an internal feature. The medial axis is then used connected to the outer contour using an optimum matching. The desired pore size and hence the porosity have been achieved by discretizing the sub-regions along its peripheral direction based on the poreudsize while meeting the tissue scaffold design constraints. This would ensure the truly porous nature of the structure in every direction as well as controllable porosity with interconnected pores. Thus the desired controlled variational porosity along the scaffold architecture has been achieved with the combination of two geometrically oriented consecutive layers. A continuous,udinterconnected and optimized tool-path has been generated for successive layers for additive-manufacturing or solid free form fabrication process. The proposed methodology has been computationally implemented with illustrative examples.udFurthermore, the designed example scaffolds with the desired pore size and porosity has been fabricated with an extrusion based bio-fabrication process.
机译:提出了针对多孔组织支架的新型建模技术,该模型针对具有连续材料沉积计划的功能梯度变化孔隙率。为了功能上改变设计支架的孔隙率,使用了中间轴转换。计算支架的每一层的中轴并将其用作内部特征。然后使用中间轴,通过最佳匹配将其连接到外部轮廓。通过在满足组织支架设计约束的基础上通过基于孔尺寸沿其周向离散化子区域,已经实现了期望的孔尺寸和因此的孔隙率。这将确保结构在各个方向上具有真正的多孔性,并确保具有可连通孔隙的可控孔隙率。因此,通过两个几何定向的连续层的组合已经实现了沿支架结构的期望的受控变化孔隙率。已经为连续的层生成了连续的, uinterconnected和优化的工具路径,以进行增材制造或无固体形式的制造过程。所提出的方法已通过示例性实施例进行了计算机实施。 ud此外,具有所需孔尺寸和孔隙率的设计示例性脚手架已通过基于挤压的生物制造工艺进行制造。

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