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Relationship between polymeric foam characteristics and properties of porous bone substitute fabricated by polymeric foam replication

机译:聚合物泡沫复制与多孔聚合物替代物的性能关系

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Polymeric foam replication is one technique used to produce bone scaffold for porous bone substitution or bone grafting in the human body. This method provides scaffolds similar to trabecular bone, as well as producing a controllable pore size and porosity scaffold. Preliminary studies illustrated that the characteristics of polymeric foam such as pore size and porosity could affect both physical and mechanical properties of the resulting scaffold. Therefore, the objective of this study is to evaluate the relationship of polymeric foam characteristics with the properties of the porous bone scaffold. In this study, 5 different types of polymeric foam were evaluated, and the phosphate glass was implemented as the biomaterial slurry. Scaffold forming took place by immersing the foam types into the slurry and then sintering them at 750 C for 3 hours. Porosity and compression testings were then used to analyze the physical and mechanical properties of the specimens. Results indicate that the optimal condition of both physical and mechanical properties was found when the polymeric foam with the highest pore density (99.5%) and approximately 300 μm pore size range was used. However, the highest compression strength obtained was only 3.48 MPa, which is at the lower range of the trabecular bone's mechanical properties. Future study will therefore focus on producing stronger porous bone scaffold for porous bone substitution.
机译:聚合物泡沫复制是一种用于生产骨支架的一种技术,用于在人体中产生多孔骨取代或骨移植。该方法提供类似于小梁骨的支架,以及产生可控孔径和孔隙率支架。初步研究表明,聚合物泡沫的特性如孔径和孔隙率,可能影响所得支架的物理和力学性质。因此,本研究的目的是评估聚合物泡沫特性与多孔骨支架的性质的关系。在该研究中,评价了5种不同类型的聚合物泡沫,并将磷酸盐玻璃用作生物材料浆料。通过将泡沫类型浸入浆料中,然后在750℃下烧结3小时来进行支架形成。然后使用孔隙率和压缩测试来分析样品的物理和力学性能。结果表明,当使用具有最高孔密度(99.5%)和约300μm孔尺寸范围的聚合物泡沫时发现了物理和机械性能的最佳条件。然而,获得的最高压缩强度仅为3.48MPa,其在较低范围的小梁骨骼的机械性能下。因此,未来的研究将专注于生产更强的多孔骨支架进行多孔骨替代。

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