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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >A new approach to improve the local compressive properties of PPDO self-expandable stent
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A new approach to improve the local compressive properties of PPDO self-expandable stent

机译:改善PPDO自膨胀支架局部压缩性能的新方法

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The radial performance of bioabsorbable polymeric intravascular stents is extremely important in assessing the efficiency of these devices in expanding narrow lumen, reducing stent recoil, and recovering to their original states after suffering from pulsating pressure. However, these stents remain inferior to metallic stents. Several thermal treatment conditions (60 degrees C, 80 degrees C, and 100 degrees C for 1 h) were investigated to improve the characteristics of poly(p-dioxanone) (PPDO) self-expandable stents. The local compressive force, stiffness, and viscoelasticity of these stents were also evaluated. Wide-angle X-ray diffraction and different scanning calorimetry measurements were performed to evaluate the recrystalline and thermodynamic changes of molecular chains. The declining conformer entropy of PPDO monofilaments was examined via energy analysis. The untreated stents had compressive modules of 514.80 +/- 70.59 mN/mm, which was much higher than those of 80 degrees C and 100 degrees C treated stents (332.35 +/- 66.08 mN/mm and 394.31 +/- 64.71 mN/mm, respectively). Nevertheless, 100 degrees C annealing stents had less stress relaxation and prior elastic recovery rate of 82.32 +/- 3.43 mN and 92.55 +/- 1.61%, respectively, showing a much better shape stability than untreated stents (139.51 +/- 16.67 mN and 86.18 +/- 3.57%, respectively). These findings present important clinical implications in the stent manufacturing process and warrant further study to develop new bioabsorbable stents with outstanding clinical efficacy.
机译:生物可吸收聚合物血管内支架的径向性能对于评估这些装置在膨胀狭窄的腔内,减少支架后弧菌的效率并且在患有脉动压力后恢复到其原始状态时非常重要。然而,这些支架仍然不如金属支架。研究了几种热处理条件(60℃,80℃和100℃,1小时)以改善聚(p-Dioxanone)(PPDO)自膨胀支架的特性。还评估了这些支架的局部压缩力,刚度和粘弹性。进行广角X射线衍射和不同的扫描量热法测量以评估分子链的再结晶和热力学变化。通过能量分析检查PPDO单丝的衰减剂熵。未处理的支架具有514.80 +/- 70.59mN / mm的压缩模块,远高于80℃和100摄氏度的支架(332.35 +/- 66.08mM / mm和394.31 +/- 64.71mn / mm , 分别)。然而,100摄氏度的退火支架具有较小的应力松弛和82.32 +/- 3.43mn和92.55 +/- 1.61%的现有弹性回收率,显示出比未处理的支架更好的形状稳定性(139.51 +/- 16.67mn 86.18分别为86.18 +/- 3.57%)。这些发现在支架制造过程中存在重要的临床意义,并提供进一步的研究,以开发具有出色的临床疗效的新的生物可吸收支架。

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