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Open-Source Wax RepRap 3-D Printer for Rapid Prototyping Paper-Based Microfluidics

机译:开源Wax RepRap 3-D打印机,用于快速原型纸基微流控技术

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摘要

The open-source release of self-replicating rapid prototypers (RepRaps) has created a rich opportunity for low-cost distributed digital fabrication of complex 3-D objects such as scientific equipment. For example, 3-D printable reactionware devices offer the opportunity to combine open hardware microfluidic handling with lab-on-a-chip reactionware to radically reduce costs and increase the number and complexity of microfluidic applications. To further drive down the cost while improving the performance of lab-on-a-chip paper-based microfluidic prototyping, this study reports on the development of a RepRap upgrade capable of converting a Prusa Mendel RepRap into a wax 3-D printer for paper-based microfluidic applications. An open-source hardware approach is used to demonstrate a 3-D printable upgrade for the 3-D printer, which combines a heated syringe pump with the RepRap/Arduino 3-D control. The bill of materials, designs, basic assembly, and use instructions are provided, along with a completely free and open-source software tool chain. The open-source hardware device described here accelerates the potential of the nascent field of electrochemical detection combined with paper-based microfluidics by dropping the marginal cost of prototyping to nearly zero while accelerating the turnover between paper-based microfluidic designs.
机译:自复制快速原型开发器(RepRaps)的开源版本为复杂的3D对象(例如科学设备)的低成本分布式数字制造创造了丰富的机会。例如,3D可打印反应软件设备提供了将开放式硬件微流体处理技术与芯片实验室反应软件相结合的机会,从而从根本上降低成本并增加微流体应用的数量和复杂性。为了进一步降低成本,同时改善基于芯片的实验室纸质微流控原型的性能,本研究报告了RepRap升级的发展,该升级能够将Prusa Mendel RepRap转换为蜡质3D打印机用于纸张基于微流体的应用。开源硬件方法用于演示3-D打印机的3-D可打印升级,该升级将加热的注射泵与RepRap / Arduino 3-D控件结合在一起。提供了物料清单,设计,基本组装和使用说明,以及一个完全免费的开源软件工具链。此处描述的开源硬件设备通过将原型的边际成本降低到几乎为零,同时加快了纸基微流体设计之间的周转速度,从而加快了电化学检测与纸基微流体结合的新兴领域的潜力。

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