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The Design and Construction of an Electrohydrodynamic Cartesian Robot for the Preparation of Tissue Engineering Constructs

机译:用于组织工程构造物制备的电动流体笛卡尔机器人的设计与构造

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摘要

In this work we bring together replicating rapid prototyping technology with electrohydrodynamic phenomena to develop a device with the ability to build structures in three-dimensions while simultaneously affording the user a degree of designing versatility and ease that is not seen in conventional computer numerically controlled machines. An attempt at reproducing an actual human ear using polycaprolactone was pursued to validate the hardware. Five different polycaprolactone solution concentrations between 7–15 wt% were used and printing was performed at applied voltages that ranged from 1 to 6 kV and at flow rates from 5µl/min to 60µl/min. The corresponding geometrical and aesthetic features of the printed constructs were studied to determine the effectiveness of the device. The 15 wt% concentration at 60µl/min under an applied electric field of 6 kV was identified as the best operating parameters to work with.
机译:在这项工作中,我们将复制快速原型技术与电流体动力学现象结合在一起,从而开发出一种能够在三维结构中构建结构的设备,同时为用户提供了一定程度的设计多功能性和简便性,这是传统计算机数控机床所没有的。尝试使用聚己内酯重现实际的人耳来验证硬件。使用了5-15%(重量)之间的五种不同的聚己内酯溶液浓度,并在施加电压范围为1到6 kV和流速为5µl / min至60µl / min的条件下进行打印。研究了印刷构造的相应几何和美学特征,以确定装置的有效性。在6 kV的施加电场下60µl / min时15 wt%的浓度被确定为最佳操作参数。

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