首页> 外文期刊>Virtual and Physical Prototyping >Multiple initiators and dyes for continuous Digital Light Processing (cDLP) additive manufacture of resorbable bone tissue engineering scaffolds: A new method and new material to fabricate resorbable scaffold for bone tissue engineering via continuous Di
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Multiple initiators and dyes for continuous Digital Light Processing (cDLP) additive manufacture of resorbable bone tissue engineering scaffolds: A new method and new material to fabricate resorbable scaffold for bone tissue engineering via continuous Di

机译:用于连续数字光处理(cDLP)增材制造可吸收性骨组织工程支架的多种引发剂和染料:一种通过连续Di来制造用于骨组织工程的可吸收性支架的新方法和新材料

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摘要

The formulation of resorbable polymer resins for light-based additive manufacturing of tissue engineered scaffolds goes beyond resin chemistry. There are at least four parameters that allow the transition from individual layer curing to 3D printing; they are: layer thickness, overcuring, step size, and inter-layer binding. Overcuring is the thickness of the layer minus step size. Overcuring distance limits surface feature resolution in the between-layer direction. Strength is an indication of crosslinking density and a function of inter-layer binding or 'stitching'. 3D printed scaffolds must be sufficiently strong to endure cleaning of unpolymerised polymer from internal pore spaces without deforming. We report our study of the effect of exposure time on strength and layer thickness while holding step size constant. Increased overcuring dramatically increases scaffold strength. High resolution implants depend on sufficient energy from the light source and a well-tuned resin consisting of: polymer, initiator(s), and perhaps dye(s), solvent(s), and biologic(s).
机译:用于组织工程支架的基于光的增材制造的可吸收聚合物树脂的配方超出了树脂化学的范畴。至少有四个参数允许从单层固化过渡到3D打印。它们是:层厚度,过度固化,步长和层间粘合。过度固化是层的厚度减去步长。过度固化的距离限制了层间方向上的表面特征分辨率。强度是交联密度的指示,是层间结合或“缝合”的函数。 3D打印的脚手架必须足够坚固,以耐于从内部孔腔清洁未聚合的聚合物而不会变形。我们报告了在保持步长不变的情况下,曝光时间对强度和层厚的影响的研究。增加的过度固化会大大增加脚手架强度。高分辨率植入物取决于来自光源和由以下各项组成的良好调节的树脂的足够能量:聚合物,引发剂,以及可能的染料,溶剂和生物制剂。

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