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DESIGNING AN INTERCHANGEABLE MULTI-MATERIAL NOZZLE SYSTEM FOR 3D BIOPRINTING PROCESS

机译:设计可互换多材料喷嘴系统,用于3D生物印刷工艺

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Three-dimensional bioprinting is a rapidly growing field attempting to recreate functional tissues for medical and pharmaceutical purposes. Development of functional tissue requires deposition of multiple biomaterials encapsulating multiple cell types i.e. bio-ink necessitating switching ability between bio-inks. Existing systems use more than one print head to achieve this complex interchangeable deposition, which decreases efficiency, structural integrity, and accuracy. In this research, we developed a nozzle system capable of switching between multiple bio-inks with continuous deposition ensuring the minimum transition distance so that precise deposition transitioning can be achieved. Finally, the effect of rheological properties of different bio-material compositions on the transition distance is investigated by fabricating the sample scaffolds.
机译:三维生物监测是一种快速生长的田间,试图为医学和药物目的进行重建功能组织。 功能组织的发展需要沉积包封多个细胞类型的多种生物材料,即生物墨水需要在生物油墨之间切换能力。 现有系统使用多个打印头来实现这种复杂的可互换沉积,这降低了效率,结构完整性和准确性。 在这项研究中,我们开发了一种喷嘴系统,其能够通过连续沉积切换多个生物油墨,确保最小过渡距离,从而可以实现精确的沉积转换。 最后,通过制造样品支架,研究了不同生物材料组合物对转变距离的流变性质的影响。

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