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Design and Fabrication of a Low-Cost Three-Dimensional Bioprinter

机译:低成本三维生物打印机的设计与制作

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摘要

Three-dimensional (3D) bioprinting offers innovative research vectors for tissue engineering. However, commercially available bioprinting platforms can be cost prohibitive to small research facilities, especially in an academic setting. The goal is to design and fabricate a low-cost printing platform able to deliver cell-laden fluids with spatial accuracy along the X, Y, and Z axes of 0.1 mm. The bioprinter consists of three subassemblies: a base unit, a gantry, and a shuttle component. The platform utilizes four stepper motors to position along three axes and a fifth stepper motor actuating a pump. The shuttle and gantry are each driven along their respective horizontal axes via separate single stepper motor, while two coupled stepper motors are used to control location along the vertical axis. The current shuttle configuration allows for a 5 mL syringe to be extruded within a work envelope of 180 mm × 160 mm × 120 mm (X, Y, Z). The shuttle can easily be reconfigured to accommodate larger volume syringes. An attachment for a laser pen is located such that printing material may be light-activated pre-extrusion. Positional fidelity was established with calipers possessing a resolution to the nearest hundredth millimeter. The motors associated with the X and Y axes were calibrated to approximately 0.02 mm per motor impulse. The Z axis has a theoretical step distance of ∼51 nm, generating 0.04% error over a 10 mm travel distance. The A axis, or pump motor, has an impulse distance of 0.001 mm. The volume extruded by a single impulse is dictated by the diameter of the syringe used. With a 5 mL syringe possessing an inner diameter of 12.35 mm, the pump pushes as little as 0.119 μL. While the Z axis is tuned to the highest resolution settings for the motor driver, the X, Y, and A axes can obtain higher or lower resolution via physical switches on the motor drivers.
机译:三维(3D)生物打印为组织工程学提供了创新的研究载体。但是,市售的生物打印平台对于小型研究机构(特别是在学术环境中)而言,可能会抑制成本。目的是设计和制造一种低成本的打印平台,该平台能够沿0.1 mm的X,Y和Z轴以空间精度输送充满细胞的流体。该生物打印机由三个子组件组成:一个基本单元,一个机架和一个往复组件。该平台利用四个步进电机沿三个轴定位,第五个步进电机驱动泵。梭子和龙门架分别通过单独的单个步进电机沿各自的水平轴驱动,而两个耦合的步进电机用于控制沿垂直轴的位置。当前的往复式配置允许将5 mL注射器挤出到180 mm×160 mm×120 mm(X,Y,Z)的工作范围内。穿梭车可以轻松地重新配置以容纳更大容量的注射器。放置激光笔的附件,以使打印材料可以进行光激活的预挤出。使用具有最接近的百分之一毫米分辨率的卡尺来确定位置保真度。与X轴和Y轴关联的电动机在每次电动机脉冲时都被校准为大约0.02mm。 Z轴的理论步距为〜51 nm,在10 mm的行程距离内产生0.04%的误差。 A轴或泵电机的脉冲距离为0.001 mm。单次脉冲挤压的体积取决于所用注射器的直径。使用内径为12.35mm的5mL注射器,泵的推力低至0.119μL。将Z轴调整为电动机驱动器的最高分辨率设置时,X,Y和A轴可以通过电动机驱动器上的物理开关获得更高或更低的分辨率。

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