首页> 外文会议>STP 1396; Symposium on Synthetic Bioabsorbable Polymers for Implants; 19991116-17; Kansas City,MI(US) >The Use of the Vibrating Particle Technique to Fabricate Highly Porous and Permeable Biodegradable Scaffolds
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The Use of the Vibrating Particle Technique to Fabricate Highly Porous and Permeable Biodegradable Scaffolds

机译:振动粒子技术在制造高多孔性和可渗透性可生物降解支架中的应用

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This study describes the degradation behavior of biodegradable scaffolds fabricated from a copolymer of polylactic acid and polyglycolic acid using a new technique that eliminates some of the problematic issues with the salt-leaching technique. Two variations of this technique were used and the in vitro degradation characteristics of the resulting scaffolds were compared. The properties monitored included mass, molecular weight, porosity, permeability, mechanical stiffness, and polydispersity. The results indicated that the vibrating particle technique, results in scaffolds that are at least 90% porous and highly permeable. During degradation the porosity of the scaffolds initially decreased up to two weeks and then inceased. On the other hand, their stiffness first increased followed by a decrease. It was also determined that the permeability of the scaffolds can vary considerably without significant changes in the porosity.
机译:这项研究描述了一种使用聚乳酸和聚乙醇酸的共聚物制造的可生物降解的支架的降解行为,该支架使用了一种新技术,该技术消除了盐浸技术的一些问题。使用了该技术的两种变体,并比较了所得支架的体外降解特性。监测的性质包括质量,分子量,孔隙率,渗透性,机械刚度和多分散性。结果表明,振动颗粒技术产生的支架至少具有90%的多孔性和高渗透性。在降解过程中,支架的孔隙率最初下降至两周,然后逐渐上升。另一方面,它们的刚度首先增加,然后降低。还确定了支架的渗透性可以在不显着改变孔隙率的情况下变化很大。

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